Starting point. Not running version.

This commit is contained in:
Pilar 2021-05-26 16:28:39 -04:00
parent 2b64d9ebcf
commit 3a1d8e2db3
57 changed files with 522 additions and 153856 deletions

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<construction id="2" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<window/>
</construction>
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</archetype>
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<constructions>
<construction id="15" type="exterior wall" >
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<construction id="12" type="exterior slab">
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<window/>
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<construction id="9" type="roof" >
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</construction>
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<archetype id="22" building_type="secondary school" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="15" type="exterior wall" >
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<window>3</window>
</construction>
<construction id="12" type="exterior slab">
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<window/>
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<construction id="9" type="roof" >
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</construction>
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<construction id="2" type="exterior wall" >
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<construction id="10" type="exterior slab">
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<window/>
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<construction id="9" type="roof" >
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</construction>
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<constructions>
<construction id="15" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<window/>
</construction>
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</archetype>
<archetype id="25" building_type="supermarket" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="2" type="exterior wall" >
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<window>3</window>
</construction>
<construction id="10" type="exterior slab">
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<window/>
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<construction id="9" type="roof" >
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<window/>
</construction>
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<archetype id="26" building_type="quick service restaurant" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="16" type="exterior wall" >
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<window>3</window>
</construction>
<construction id="10" type="exterior slab">
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<window/>
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<construction id="4" type="roof" >
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<window/>
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<archetype id="27" building_type="full service restaurant" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="15" type="exterior wall" >
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</construction>
<construction id="10" type="exterior slab">
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<window/>
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<construction id="4" type="roof" >
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<window/>
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<archetype id="28" building_type="small hotel" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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<construction id="15" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<archetype id="29" building_type="large hotel" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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<construction id="2" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<window/>
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<archetype id="30" building_type="hospital" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="2" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<window/>
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</archetype>
<archetype id="31" building_type="outpatient healthcare" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="15" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<archetype id="32" building_type="warehouse" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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<window/>
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<construction id="11" type="roof" >
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<archetype id="33" building_type="midrise apartment" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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<construction id="15" type="exterior wall" >
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<window/>
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<construction id="9" type="roof" >
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<archetype id="34" building_type="high-rise apartment" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
<constructions>
<construction id="15" type="exterior wall" >
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</archetypes>

View File

@ -1,606 +0,0 @@
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</material>
<material id="8" name="Wood Siding">
<conductivity units="W/m K">0.11</conductivity>
<density units="kg/m3">544.62</density>
<specific_heat units="J/kg K">1210</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.78</solar_absorptance>
<visible_absorptance units="-">0.78</visible_absorptance>
</material>
<material id="9" name="Wood Shingles">
<conductivity units="W/m K">0.115</conductivity>
<density units="kg/m3">513</density>
<specific_heat units="J/kg K">1255</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.78</solar_absorptance>
<visible_absorptance units="-">0.78</visible_absorptance>
</material>
<material id="10" name="1IN Wood Decking">
<conductivity units="W/m K">0.1211</conductivity>
<density units="kg/m3">593</density>
<specific_heat units="J/kg K">2510</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.78</solar_absorptance>
<visible_absorptance units="-">0.78</visible_absorptance>
</material>
<material id="11" name="Roof Insulation [23]">
<conductivity units="W/m K">0.049</conductivity>
<density units="kg/m3">265</density>
<specific_heat units="J/kg K">836.8</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="12" name="MAT-SHEATH">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.36256</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="13" name="MAT-SHEATH">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.36256</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="14" name="Metal Decking">
<conductivity units="W/m K">45.006</conductivity>
<density units="kg/m3">7680</density>
<specific_heat units="J/kg K">418.4</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.3</visible_absorptance>
</material>
<material id="15" name="Roof Membrane">
<conductivity units="W/m K">0.16</conductivity>
<density units="kg/m3">1121.29</density>
<specific_heat units="J/kg K">1460</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="16" name="CP02 CARPET PAD">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.21648</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.8</visible_absorptance>
</material>
<material id="17" name="MAT-SHEATH">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.36256</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="18" name="CP02 CARPET PAD">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.21648</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.8</visible_absorptance>
</material>
<material id="19" name="MAT-SHEATH">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.36256</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="20" name="CP02 CARPET PAD">
<no_mass>true</no_mass>
<thermal_resistance units="m2 K/W">0.21648</thermal_resistance>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.8</visible_absorptance>
</material>
<material id="21" name="Wall Insulation [38]">
<conductivity units="W/m K">0.045</conductivity>
<density units="kg/m3">265</density>
<specific_heat units="J/kg K">836.8</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.7</solar_absorptance>
<visible_absorptance units="-">0.7</visible_absorptance>
</material>
<material id="22" name="metal siding">
<conductivity units="W/m K">44.96</conductivity>
<density units="kg/m3">7688.86</density>
<specific_heat units="J/kg K">410</specific_heat>
<thermal_absorptance units="-">0.9</thermal_absorptance>
<solar_absorptance units="-">0.2</solar_absorptance>
<visible_absorptance units="-">0.2</visible_absorptance>
</material>
</materials>
<constructions>
<construction type="exterior slab" id="1" name="189.1-2009 Nonres 4B Exposed Floor Mass">
<layers>
<layer id="1" name="Layer 1">
<material>3</material>
<thickness units="m">0.0795397</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>1</material>
<thickness units="m">0.20321</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>2</material>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="2" name="189.1-2009 Nonres 4B Ext Wall Mass">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>4</material>
<thickness units="m">0.0253</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>5</material>
<thickness units="m">0.2033</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>6</material>
<thickness units="m">0.0680962</thickness>
</layer>
<layer id="4" name="Layer 4">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="3" name="90.1-2004 Nonres 4B Ext Wall Wood-Framed and Other">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>8</material>
<thickness units="m">0.01</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.0746874</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="4" name="189.1-2009 Nonres 4B Roof Attic and Other">
<outside_solar_absorptance units="-">0.78</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.78</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>9</material>
<thickness units="m">0.0178</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>10</material>
<thickness units="m">0.0254</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>11</material>
<thickness units="m">0.375211</thickness>
</layer>
<layer id="4" name="Layer 4">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="5" name="90.1-2004 Nonres 4B Roof Attic and Other">
<outside_solar_absorptance units="-">0.78</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.78</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>9</material>
<thickness units="m">0.0178</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>10</material>
<thickness units="m">0.0254</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>11</material>
<thickness units="m">0.221604</thickness>
</layer>
<layer id="4" name="Layer 4">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="6" name="189.1-2009 Nonres 4B Ext Wall Steel-Framed">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>12</material>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.118387</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="7" name="189.1-2009 Nonres 4B Ext Slab Unheated - 8in Slab without Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.20321</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="8" name="90.1-2004 Nonres 4B Ext Wall Steel-Framed">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>13</material>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.0373223</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="9" name="189.1-2009 Nonres 4B Roof IEAD">
<outside_solar_absorptance units="-">0.7</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.7</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>15</material>
<thickness units="m">0.0095</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>11</material>
<thickness units="m">0.210538</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>14</material>
<thickness units="m">0.001524</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="10" name="189.1-2009 Nonres 4B Ext Slab Unheated - 4in Slab without Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.1016</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="11" name="189.1-2009 Nonres 4B Roof Metal Building">
<outside_solar_absorptance units="-">0.7</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.3</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>14</material>
<thickness units="m">0.001524</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>11</material>
<thickness units="m">0.23578</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="12" name="189.1-2009 Nonres 4B Ext Slab Unheated - 4in Slab with Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.1016</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>16</material>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="13" name="90.1-2004 Nonres 4B Ext Wall Mass">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>4</material>
<thickness units="m">0.0253</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>5</material>
<thickness units="m">0.2033</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>6</material>
<thickness units="m">0.0338606</thickness>
</layer>
<layer id="4" name="Layer 4">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="14" name="90.1-2004 Nonres 4B Roof Metal Building">
<outside_solar_absorptance units="-">0.7</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.3</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>14</material>
<thickness units="m">0.001524</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>11</material>
<thickness units="m">0.123533</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="15" name="189.1-2009 Res 4B Ext Wall Steel-Framed">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>17</material>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.118387</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="16" name="189.1-2009 Nonres 4B Ext Wall Wood-Framed and Other">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>8</material>
<thickness units="m">0.01</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.110422</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="roof" id="17" name="90.1-2004 Nonres 4B Roof IEAD">
<outside_solar_absorptance units="-">0.7</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.7</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>15</material>
<thickness units="m">0.0095</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>11</material>
<thickness units="m">0.124958</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>14</material>
<thickness units="m">0.001524</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="18" name="90.1-2004 Nonres 4B Exposed Floor Mass">
<layers>
<layer id="1" name="Layer 1">
<material>3</material>
<thickness units="m">0.0463846</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>1</material>
<thickness units="m">0.20321</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>18</material>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="19" name="90.1-2004 Res 4B Ext Wall Steel-Framed">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>19</material>
</layer>
<layer id="2" name="Layer 2">
<material>3</material>
<thickness units="m">0.0971136</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="20" name="90.1-2004 Nonres 4B Ext Slab Unheated - 8in Slab without Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.20321</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="21" name="90.1-2004 Nonres 4B Ext Slab Unheated - 4in Slab without Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.1016</thickness>
</layer>
</layers>
</construction>
<construction type="exterior slab" id="22" name="90.1-2004 Nonres 4B Ext Slab Unheated - 4in Slab with Carpet">
<layers>
<layer id="1" name="Layer 1">
<material>1</material>
<thickness units="m">0.1016</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>20</material>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="23" name="189.1-2009 Nonres 4B Ext Wall Metal Building">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>22</material>
<thickness units="m">0.0015</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>21</material>
<thickness units="m">0.139618</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
<construction type="exterior wall" id="24" name="90.1-2004 Nonres 4B Ext Wall Metal Building">
<outside_solar_absorptance units="-">0.92</outside_solar_absorptance>
<outside_thermal_absorptance units="-">0.9</outside_thermal_absorptance>
<outside_visible_absorptance units="-">0.92</outside_visible_absorptance>
<layers>
<layer id="1" name="Layer 1">
<material>22</material>
<thickness units="m">0.0015</thickness>
</layer>
<layer id="2" name="Layer 2">
<material>21</material>
<thickness units="m">0.0598725</thickness>
</layer>
<layer id="3" name="Layer 3">
<material>7</material>
<thickness units="m">0.01271</thickness>
</layer>
</layers>
</construction>
</constructions>
</library>

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@ -1,685 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
121 % Radiation surface 21
122 % Radiation surface 22
123 % Radiation surface 23
124 % Radiation surface 24
125 % Radiation surface 25
126 % Radiation surface 26
127 % Radiation surface 27
128 % Radiation surface 28
129 % Radiation surface 29
130 % Radiation surface 30
131 % Radiation surface 31
132 % Radiation surface 32
133 % Radiation surface 33
134 % Radiation surface 34
135 % Radiation surface 35
136 % Radiation surface 36
p 4
19197.0703125 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
36 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
1 73.37652058884575 0.0 0.07423253422638612 22.012956176653724 0 0.39683064590801465 0.328881 0.07999999999999996
1 73.37652058884552 0.0 0.07423253422638612 22.012956176653656 0 0.39683064590801465 0.328881 0.07999999999999996
3 400.4114193916309 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 256.8261651992786 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 485.3228619098664 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 485.3353545665724 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 94.8842318058016 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 219.18474864959651 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 219.18735456466737 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 238.48256218433565 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
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1 111.99930179332144 0.0 0.07423253422638612 33.59979053799643 0 0.39683064590801465 0.328881 0.07999999999999996
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1 112.0020041838518 0.0 0.07423253422638612 33.60060125515554 0 0.39683064590801465 0.328881 0.07999999999999996
1 112.00200418384867 0.0 0.07423253422638612 33.6006012551546 0 0.39683064590801465 0.328881 0.07999999999999996
1 112.00036730447985 0.0 0.07423253422638612 33.60011019134395 0 0.39683064590801465 0.328881 0.07999999999999996
1 112.00036730448001 0.0 0.07423253422638612 33.600110191344 0 0.39683064590801465 0.328881 0.07999999999999996
1 73.37758610072865 0.0 0.07423253422638612 22.013275830218593 0 0.39683064590801465 0.328881 0.07999999999999996
1 73.37758610072832 0.0 0.07423253422638612 22.013275830218497 0 0.39683064590801465 0.328881 0.07999999999999996
1 248.00003900690726 0.0 0.07423253422638612 74.40001170207218 0 0.39683064590801465 0.328881 0.07999999999999996
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1 174.62294705503686 0.0 0.07423253422638612 52.386884116511055 0 0.39683064590801465 0.328881 0.07999999999999996
1 174.62294705503652 0.0 0.07423253422638612 52.386884116510956 0 0.39683064590801465 0.328881 0.07999999999999996
s 20 polyg 1
p 20 12 % Monthly ambient temperature
1 0.1388833522894489
2 0.8253312650631995
3 5.049363812797564
4 11.215108507260004
5 16.77438382580644
6 21.961446563611123
7 24.812365742473112
8 23.77130604260751
9 20.166688549722227
10 14.760234274583324
11 8.599390164833329
12 1.8664905226848094
s 21 polyg 1
p 21 12 % Monthly sky temperature
1 -16.076913199648175
2 -15.21147269922151
3 -9.933090693841589
4 -2.132949752599609
5 4.943461486249397
6 11.595246783694925
7 15.267063262153538
8 13.923356695706257
9 9.285486888525977
10 2.3706575244978043
11 -5.45718035991585
12 -13.91386612162487
s 101 polyg 1 % Monthly surface radiation (W/sqm)
p 101 12 % Azimuth -2.14782098851867, inclination 1.5707963267948966 degrees
1 58209
2 66290
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6 74850
7 78908
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10 83725
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s 102 polyg 1 % Monthly surface radiation (W/sqm)
p 102 12 % Azimuth -2.14782098851867, inclination 1.5707963267948966 degrees
1 54138
2 60038
3 72647
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10 75811
11 50939
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s 103 polyg 1 % Monthly surface radiation (W/sqm)
p 103 12 % Azimuth 0.0, inclination 0.0 degrees
1 46862
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s 104 polyg 1 % Monthly surface radiation (W/sqm)
p 104 12 % Azimuth 0.0, inclination 0.0 degrees
1 46616
2 62627
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s 105 polyg 1 % Monthly surface radiation (W/sqm)
p 105 12 % Azimuth 0.0, inclination 0.0 degrees
1 47994
2 63064
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s 106 polyg 1 % Monthly surface radiation (W/sqm)
p 106 12 % Azimuth 0.0, inclination 0.0 degrees
1 47900
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7 166092
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s 107 polyg 1 % Monthly surface radiation (W/sqm)
p 107 12 % Azimuth 0.0, inclination 0.0 degrees
1 44899
2 57551
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8 134870
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s 108 polyg 1 % Monthly surface radiation (W/sqm)
p 108 12 % Azimuth 0.0, inclination 0.0 degrees
1 46074
2 61596
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s 109 polyg 1 % Monthly surface radiation (W/sqm)
p 109 12 % Azimuth 0.0, inclination 0.0 degrees
1 47504
2 60900
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s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth 0.0, inclination 0.0 degrees
1 47352
2 62002
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s 111 polyg 1 % Monthly surface radiation (W/sqm)
p 111 12 % Azimuth -0.5770696086110522, inclination 1.5707963267948966 degrees
1 43298
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s 112 polyg 1 % Monthly surface radiation (W/sqm)
p 112 12 % Azimuth -0.5770696086110522, inclination 1.5707963267948966 degrees
1 40051
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s 113 polyg 1 % Monthly surface radiation (W/sqm)
p 113 12 % Azimuth 2.5645604938758217, inclination 1.5707963267948966 degrees
1 16148
2 22765
3 35859
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s 114 polyg 1 % Monthly surface radiation (W/sqm)
p 114 12 % Azimuth 2.5645604938758217, inclination 1.5707963267948966 degrees
1 16134
2 21758
3 36558
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5 57414
6 62786
7 60957
8 52257
9 41706
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s 115 polyg 1 % Monthly surface radiation (W/sqm)
p 115 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 117 polyg 1 % Monthly surface radiation (W/sqm)
p 117 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 118 polyg 1 % Monthly surface radiation (W/sqm)
p 118 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 119 polyg 1 % Monthly surface radiation (W/sqm)
p 119 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 120 polyg 1 % Monthly surface radiation (W/sqm)
p 120 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 121 polyg 1 % Monthly surface radiation (W/sqm)
p 121 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 122 polyg 1 % Monthly surface radiation (W/sqm)
p 122 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 123 polyg 1 % Monthly surface radiation (W/sqm)
p 123 12 % Azimuth -2.1478243923599645, inclination 1.5707963267948966 degrees
1 55803
2 61073
3 73679
4 73250
5 77566
6 70106
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8 77211
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10 77054
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s 124 polyg 1 % Monthly surface radiation (W/sqm)
p 124 12 % Azimuth -2.1478243923599645, inclination 1.5707963267948966 degrees
1 45013
2 50299
3 67862
4 69344
5 70484
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7 67966
8 70649
9 71545
10 65936
11 39525
12 34118
s 125 polyg 1 % Monthly surface radiation (W/sqm)
p 125 12 % Azimuth 0.9937588187872065, inclination 1.5707963267948966 degrees
1 17540
2 22415
3 36253
4 48878
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7 70402
8 54683
9 40655
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s 126 polyg 1 % Monthly surface radiation (W/sqm)
p 126 12 % Azimuth 0.9937588187872065, inclination 1.5707963267948966 degrees
1 17515
2 22229
3 35775
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8 54805
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s 127 polyg 1 % Monthly surface radiation (W/sqm)
p 127 12 % Azimuth 0.9937631596186524, inclination 1.5707963267948966 degrees
1 16253
2 20596
3 32288
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s 128 polyg 1 % Monthly surface radiation (W/sqm)
p 128 12 % Azimuth 0.9937631596186524, inclination 1.5707963267948966 degrees
1 14584
2 18699
3 30333
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5 50126
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s 129 polyg 1 % Monthly surface radiation (W/sqm)
p 129 12 % Azimuth -0.5770426806052922, inclination 1.5707963267948966 degrees
1 40743
2 48108
3 67003
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8 78194
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s 130 polyg 1 % Monthly surface radiation (W/sqm)
p 130 12 % Azimuth -0.5770426806052922, inclination 1.5707963267948966 degrees
1 34801
2 44584
3 61426
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s 131 polyg 1 % Monthly surface radiation (W/sqm)
p 131 12 % Azimuth -0.5770469695371958, inclination 1.5707963267948966 degrees
1 44055
2 49672
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s 132 polyg 1 % Monthly surface radiation (W/sqm)
p 132 12 % Azimuth -0.5770469695371958, inclination 1.5707963267948966 degrees
1 43400
2 50232
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s 133 polyg 1 % Monthly surface radiation (W/sqm)
p 133 12 % Azimuth 2.564564049794297, inclination 1.5707963267948966 degrees
1 20908
2 28275
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s 134 polyg 1 % Monthly surface radiation (W/sqm)
p 134 12 % Azimuth 2.564564049794297, inclination 1.5707963267948966 degrees
1 20557
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s 135 polyg 1 % Monthly surface radiation (W/sqm)
p 135 12 % Azimuth -2.147842062616482, inclination 1.5707963267948966 degrees
1 62023
2 67328
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s 136 polyg 1 % Monthly surface radiation (W/sqm)
p 136 12 % Azimuth -2.147842062616482, inclination 1.5707963267948966 degrees
1 59202
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% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__106_insel.out' % File name
'*' % Fortran format

View File

@ -1,549 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
121 % Radiation surface 21
122 % Radiation surface 22
123 % Radiation surface 23
124 % Radiation surface 24
125 % Radiation surface 25
126 % Radiation surface 26
127 % Radiation surface 27
128 % Radiation surface 28
p 4
13172.44140625 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
28 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
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1 62.62364531047165 0.0 0.07423253422638612 18.787093593141496 0 0.39683064590801465 0.328881 0.07999999999999996
3 265.9955348968508 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 558.000873327255 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 100.89052009582495 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 305.2877643108345 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 251.98736953735417 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 164.39210736751534 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
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2 265.9955348968508 0.0 0.07541464874089364 0.0 0 0 0 0
2 558.000873327255 0.0 0.07541464874089364 0.0 0 0 0 0
2 100.89052009582495 0.0 0.07541464874089364 0.0 0 0 0 0
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1 155.9981963770299 0.0 0.07423253422638612 46.79945891310897 0 0.39683064590801465 0.328881 0.07999999999999996
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1 73.37758610072865 0.0 0.07423253422638612 22.013275830218593 0 0.39683064590801465 0.328881 0.07999999999999996
s 20 polyg 1
p 20 12 % Monthly ambient temperature
1 0.1388833522894489
2 0.8253312650631995
3 5.049363812797564
4 11.215108507260004
5 16.77438382580644
6 21.961446563611123
7 24.812365742473112
8 23.77130604260751
9 20.166688549722227
10 14.760234274583324
11 8.599390164833329
12 1.8664905226848094
s 21 polyg 1
p 21 12 % Monthly sky temperature
1 -16.076913199648175
2 -15.21147269922151
3 -9.933090693841589
4 -2.132949752599609
5 4.943461486249397
6 11.595246783694925
7 15.267063262153538
8 13.923356695706257
9 9.285486888525977
10 2.3706575244978043
11 -5.45718035991585
12 -13.91386612162487
s 101 polyg 1 % Monthly surface radiation (W/sqm)
p 101 12 % Azimuth 2.564515315385707, inclination 1.5707963267948966 degrees
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2 26346
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s 102 polyg 1 % Monthly surface radiation (W/sqm)
p 102 12 % Azimuth 2.564515315385707, inclination 1.5707963267948966 degrees
1 18419
2 25657
3 38596
4 53126
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s 103 polyg 1 % Monthly surface radiation (W/sqm)
p 103 12 % Azimuth 0.0, inclination 0.0 degrees
1 47356
2 61364
3 96989
4 128966
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10 82700
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s 104 polyg 1 % Monthly surface radiation (W/sqm)
p 104 12 % Azimuth 0.0, inclination 0.0 degrees
1 48077
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11 48405
12 38279
s 105 polyg 1 % Monthly surface radiation (W/sqm)
p 105 12 % Azimuth 0.0, inclination 0.0 degrees
1 46182
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9 111809
10 84213
11 46650
12 36343
s 106 polyg 1 % Monthly surface radiation (W/sqm)
p 106 12 % Azimuth 0.0, inclination 0.0 degrees
1 47128
2 61906
3 98460
4 128444
5 157074
6 158354
7 163408
8 142907
9 113239
10 83646
11 47655
12 37347
s 107 polyg 1 % Monthly surface radiation (W/sqm)
p 107 12 % Azimuth 3.141592653589793, inclination 0.0 degrees
1 47040
2 62606
3 99939
4 129465
5 157587
6 160466
7 165463
8 143657
9 114302
10 85549
11 47516
12 37243
s 108 polyg 1 % Monthly surface radiation (W/sqm)
p 108 12 % Azimuth 0.0, inclination 0.0 degrees
1 47470
2 59881
3 92804
4 126944
5 155680
6 156763
7 161952
8 142430
9 107892
10 79898
11 47427
12 38353
s 109 polyg 1 % Monthly surface radiation (W/sqm)
p 109 12 % Azimuth -2.1478489800947633, inclination 1.5707963267948966 degrees
1 48559
2 57339
3 73866
4 74835
5 79799
6 71652
7 75550
8 79167
9 76976
10 73649
11 45590
12 37414
s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth -2.1478489800947633, inclination 1.5707963267948966 degrees
1 49880
2 58168
3 74249
4 75903
5 74726
6 70934
7 73174
8 76997
9 79053
10 74185
11 46694
12 35677
s 111 polyg 1 % Monthly surface radiation (W/sqm)
p 111 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 112 polyg 1 % Monthly surface radiation (W/sqm)
p 112 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 113 polyg 1 % Monthly surface radiation (W/sqm)
p 113 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 114 polyg 1 % Monthly surface radiation (W/sqm)
p 114 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 115 polyg 1 % Monthly surface radiation (W/sqm)
p 115 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 117 polyg 1 % Monthly surface radiation (W/sqm)
p 117 12 % Azimuth 0.993746119349322, inclination 1.5707963267948966 degrees
1 17530
2 22395
3 35254
4 49213
5 63357
6 69724
7 70019
8 55566
9 40001
10 28202
11 17794
12 14788
s 118 polyg 1 % Monthly surface radiation (W/sqm)
p 118 12 % Azimuth 0.993746119349322, inclination 1.5707963267948966 degrees
1 17501
2 22089
3 36179
4 49740
5 62230
6 68661
7 69214
8 54991
9 41205
10 27887
11 17712
12 14762
s 119 polyg 1 % Monthly surface radiation (W/sqm)
p 119 12 % Azimuth 2.5645404592773735, inclination 1.5707963267948966 degrees
1 17657
2 22566
3 38524
4 49779
5 65378
6 73753
7 71637
8 57384
9 43500
10 29450
11 17787
12 14564
s 120 polyg 1 % Monthly surface radiation (W/sqm)
p 120 12 % Azimuth 2.5645404592773735, inclination 1.5707963267948966 degrees
1 16843
2 23843
3 38278
4 53961
5 66828
6 71068
7 69388
8 62345
9 45511
10 30679
11 17530
12 13825
s 121 polyg 1 % Monthly surface radiation (W/sqm)
p 121 12 % Azimuth -0.5770329001944602, inclination 1.5707963267948966 degrees
1 45824
2 54444
3 73994
4 84355
5 91960
6 89459
7 95134
8 89418
9 79741
10 71328
11 44562
12 42206
s 122 polyg 1 % Monthly surface radiation (W/sqm)
p 122 12 % Azimuth -0.5770329001944602, inclination 1.5707963267948966 degrees
1 47390
2 55109
3 76068
4 82956
5 87491
6 89197
7 93498
8 85530
9 81800
10 72215
11 45936
12 42931
s 123 polyg 1 % Monthly surface radiation (W/sqm)
p 123 12 % Azimuth 0.9937883798139426, inclination 1.5707963267948966 degrees
1 13449
2 16647
3 25117
4 33772
5 43451
6 48957
7 47908
8 37964
9 27785
10 20568
11 13560
12 11346
s 124 polyg 1 % Monthly surface radiation (W/sqm)
p 124 12 % Azimuth 0.9937883798139426, inclination 1.5707963267948966 degrees
1 13677
2 17047
3 25832
4 34786
5 42337
6 46931
7 45969
8 38031
9 28921
10 21243
11 13812
12 11497
s 125 polyg 1 % Monthly surface radiation (W/sqm)
p 125 12 % Azimuth -2.147815287768105, inclination 1.5707963267948966 degrees
1 59768
2 67066
3 82415
4 82234
5 85929
6 76643
7 80566
8 86286
9 85430
10 84739
11 55278
12 47013
s 126 polyg 1 % Monthly surface radiation (W/sqm)
p 126 12 % Azimuth -2.147815287768105, inclination 1.5707963267948966 degrees
1 59834
2 64648
3 79381
4 81674
5 81225
6 77024
7 79981
8 83362
9 83974
10 81215
11 55496
12 45884
s 127 polyg 1 % Monthly surface radiation (W/sqm)
p 127 12 % Azimuth 2.5645456840525975, inclination 1.5707963267948966 degrees
1 19951
2 27126
3 44005
4 56690
5 71509
6 74374
7 73961
8 65340
9 50362
10 35065
11 20539
12 16230
s 128 polyg 1 % Monthly surface radiation (W/sqm)
p 128 12 % Azimuth 2.5645456840525975, inclination 1.5707963267948966 degrees
1 19778
2 27796
3 44038
4 59233
5 73369
6 78153
7 77025
8 67915
9 51215
10 35564
11 20308
12 16319
% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__107_insel.out' % File name
'*' % Fortran format

View File

@ -1,413 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
p 4
9852.96875 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
20 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
1 62.62315113848021 0.0 0.07423253422638612 18.78694534154406 0 0.39683064590801465 0.328881 0.07999999999999996
1 62.62315113848048 0.0 0.07423253422638612 18.786945341544143 0 0.39683064590801465 0.328881 0.07999999999999996
1 185.37959028035502 0.0 0.07423253422638612 55.613877084106505 0 0.39683064590801465 0.328881 0.07999999999999996
1 185.37959028035536 0.0 0.07423253422638612 55.613877084106605 0 0.39683064590801465 0.328881 0.07999999999999996
1 172.96636359046153 0.0 0.07423253422638612 51.889909077138455 0 0.39683064590801465 0.328881 0.07999999999999996
1 172.9663635904479 0.0 0.07423253422638612 51.88990907713437 0 0.39683064590801465 0.328881 0.07999999999999996
2 253.0256743431075 0.0 0.07541464874089364 0.0 0 0 0 0
2 396.627392292022 0.0 0.07541464874089364 0.0 0 0 0 0
2 219.1849665641788 0.0 0.07541464874089364 0.0 0 0 0 0
2 362.7865109443677 0.0 0.07541464874089364 0.0 0 0 0 0
3 219.1849665641788 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 362.7865109443677 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 253.0256743431075 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 396.627392292022 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
1 112.00200418385074 0.0 0.07423253422638612 33.60060125515522 0 0.39683064590801465 0.328881 0.07999999999999996
1 112.00200418384868 0.0 0.07423253422638612 33.6006012551546 0 0.39683064590801465 0.328881 0.07999999999999996
1 73.37922297819529 0.0 0.07423253422638612 22.013766893458584 0 0.39683064590801465 0.328881 0.07999999999999996
1 73.37922297819473 0.0 0.07423253422638612 22.01376689345842 0 0.39683064590801465 0.328881 0.07999999999999996
1 110.34214696573845 0.0 0.07423253422638612 33.10264408972154 0 0.39683064590801465 0.328881 0.07999999999999996
1 110.34214696573953 0.0 0.07423253422638612 33.102644089721856 0 0.39683064590801465 0.328881 0.07999999999999996
s 20 polyg 1
p 20 12 % Monthly ambient temperature
1 0.1388833522894489
2 0.8253312650631995
3 5.049363812797564
4 11.215108507260004
5 16.77438382580644
6 21.961446563611123
7 24.812365742473112
8 23.77130604260751
9 20.166688549722227
10 14.760234274583324
11 8.599390164833329
12 1.8664905226848094
s 21 polyg 1
p 21 12 % Monthly sky temperature
1 -16.076913199648175
2 -15.21147269922151
3 -9.933090693841589
4 -2.132949752599609
5 4.943461486249397
6 11.595246783694925
7 15.267063262153538
8 13.923356695706257
9 9.285486888525977
10 2.3706575244978043
11 -5.45718035991585
12 -13.91386612162487
s 101 polyg 1 % Monthly surface radiation (W/sqm)
p 101 12 % Azimuth -2.1478043734587677, inclination 1.5707963267948966 degrees
1 59535
2 63254
3 78582
4 74197
5 79006
6 76269
7 78963
8 77134
9 78957
10 79448
11 53264
12 46999
s 102 polyg 1 % Monthly surface radiation (W/sqm)
p 102 12 % Azimuth -2.1478043734587677, inclination 1.5707963267948966 degrees
1 58904
2 63461
3 80886
4 82531
5 85755
6 74778
7 78976
8 86277
9 85036
10 81167
11 51811
12 46462
s 103 polyg 1 % Monthly surface radiation (W/sqm)
p 103 12 % Azimuth -0.5770386304741594, inclination 1.5707963267948966 degrees
1 45167
2 54171
3 76056
4 84362
5 91568
6 90183
7 95505
8 88631
9 81733
10 71798
11 44187
12 40916
s 104 polyg 1 % Monthly surface radiation (W/sqm)
p 104 12 % Azimuth -0.5770386304741594, inclination 1.5707963267948966 degrees
1 47004
2 53619
3 75512
4 83996
5 90289
6 88441
7 93461
8 87824
9 81875
10 70821
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s 105 polyg 1 % Monthly surface radiation (W/sqm)
p 105 12 % Azimuth 0.9937678382522427, inclination 1.5707963267948966 degrees
1 17474
2 22038
3 35990
4 49756
5 63238
6 70198
7 70437
8 55643
9 40895
10 27806
11 17682
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s 106 polyg 1 % Monthly surface radiation (W/sqm)
p 106 12 % Azimuth 0.9937678382522427, inclination 1.5707963267948966 degrees
1 17413
2 22108
3 35116
4 48577
5 62525
6 70635
7 70755
8 54447
9 39758
10 27953
11 17658
12 14694
s 107 polyg 1 % Monthly surface radiation (W/sqm)
p 107 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 108 polyg 1 % Monthly surface radiation (W/sqm)
p 108 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 109 polyg 1 % Monthly surface radiation (W/sqm)
p 109 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 111 polyg 1 % Monthly surface radiation (W/sqm)
p 111 12 % Azimuth 0.0, inclination 0.0 degrees
1 46939
2 60778
3 96279
4 127197
5 155939
6 158325
7 162925
8 141085
9 111111
10 81750
11 47788
12 37440
s 112 polyg 1 % Monthly surface radiation (W/sqm)
p 112 12 % Azimuth 3.141592653589793, inclination 0.0 degrees
1 47564
2 61770
3 98609
4 129091
5 157899
6 160291
7 165331
8 143433
9 113524
10 83444
11 47562
12 37939
s 113 polyg 1 % Monthly surface radiation (W/sqm)
p 113 12 % Azimuth 0.0, inclination 0.0 degrees
1 47068
2 61177
3 98404
4 127805
5 156713
6 159345
7 164370
8 142153
9 113053
10 83354
11 47336
12 37970
s 114 polyg 1 % Monthly surface radiation (W/sqm)
p 114 12 % Azimuth 0.0, inclination 0.0 degrees
1 47114
2 61842
3 97860
4 128741
5 157482
6 158503
7 163771
8 143718
9 112137
10 83789
11 47622
12 37568
s 115 polyg 1 % Monthly surface radiation (W/sqm)
p 115 12 % Azimuth 2.564559486413549, inclination 1.5707963267948966 degrees
1 19371
2 27329
3 42428
4 57433
5 70128
6 74613
7 73668
8 65844
9 49561
10 35022
11 20098
12 15747
s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth 2.564559486413549, inclination 1.5707963267948966 degrees
1 18991
2 25222
3 38602
4 50621
5 64657
6 70341
7 68553
8 58648
9 44440
10 31877
11 19055
12 15149
s 117 polyg 1 % Monthly surface radiation (W/sqm)
p 117 12 % Azimuth 2.564560204922364, inclination 1.5707963267948966 degrees
1 18816
2 25582
3 41085
4 54224
5 66658
6 70731
7 69102
8 61696
9 48019
10 32677
11 19853
12 15222
s 118 polyg 1 % Monthly surface radiation (W/sqm)
p 118 12 % Azimuth 2.564560204922364, inclination 1.5707963267948966 degrees
1 17002
2 22951
3 37198
4 52473
5 66991
6 72028
7 70131
8 61170
9 43837
10 30101
11 17288
12 14082
s 119 polyg 1 % Monthly surface radiation (W/sqm)
p 119 12 % Azimuth -2.1478215821708244, inclination 1.5707963267948966 degrees
1 57732
2 63440
3 74746
4 79140
5 79773
6 69489
7 73201
8 82642
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10 77737
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s 120 polyg 1 % Monthly surface radiation (W/sqm)
p 120 12 % Azimuth -2.1478215821708244, inclination 1.5707963267948966 degrees
1 48829
2 55129
3 73048
4 72705
5 74152
6 70760
7 73412
8 74687
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10 71954
11 44892
12 35428
% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__14_insel.out' % File name
'*' % Fortran format

File diff suppressed because it is too large Load Diff

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@ -1,413 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
p 4
8576.359375 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
20 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
1 65.35939539087856 0.0 0.07423253422638612 19.60781861726357 0 0.39683064590801465 0.328881 0.07999999999999996
1 65.35939539087934 0.0 0.07423253422638612 19.607818617263803 0 0.39683064590801465 0.328881 0.07999999999999996
3 353.2905621528646 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 225.3794621229171 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 182.73204445839036 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 310.64158046245456 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
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1 93.37725349813694 0.0 0.07423253422638612 28.013176049441082 0 0.39683064590801465 0.328881 0.07999999999999996
1 110.34591486989628 0.0 0.07423253422638612 33.10377446096888 0 0.39683064590801465 0.328881 0.07999999999999996
1 110.34591486989723 0.0 0.07423253422638612 33.10377446096917 0 0.39683064590801465 0.328881 0.07999999999999996
2 182.73204445839036 0.0 0.07541464874089364 0.0 0 0 0 0
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2 353.2905621528646 0.0 0.07541464874089364 0.0 0 0 0 0
2 225.3794621229171 0.0 0.07541464874089364 0.0 0 0 0 0
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1 62.62151423634227 0.0 0.07423253422638612 18.78645427090268 0 0.39683064590801465 0.328881 0.07999999999999996
1 158.73828573739917 0.0 0.07423253422638612 47.62148572121975 0 0.39683064590801465 0.328881 0.07999999999999996
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1 172.9663635904479 0.0 0.07423253422638612 51.88990907713437 0 0.39683064590801465 0.328881 0.07999999999999996
s 20 polyg 1
p 20 12 % Monthly ambient temperature
1 0.1388833522894489
2 0.8253312650631995
3 5.049363812797564
4 11.215108507260004
5 16.77438382580644
6 21.961446563611123
7 24.812365742473112
8 23.77130604260751
9 20.166688549722227
10 14.760234274583324
11 8.599390164833329
12 1.8664905226848094
s 21 polyg 1
p 21 12 % Monthly sky temperature
1 -16.076913199648175
2 -15.21147269922151
3 -9.933090693841589
4 -2.132949752599609
5 4.943461486249397
6 11.595246783694925
7 15.267063262153538
8 13.923356695706257
9 9.285486888525977
10 2.3706575244978043
11 -5.45718035991585
12 -13.91386612162487
s 101 polyg 1 % Monthly surface radiation (W/sqm)
p 101 12 % Azimuth -0.5770704992232869, inclination 1.5707963267948966 degrees
1 44141
2 48286
3 68858
4 74672
5 82053
6 82038
7 86368
8 78454
9 73274
10 62743
11 41348
12 40963
s 102 polyg 1 % Monthly surface radiation (W/sqm)
p 102 12 % Azimuth -0.5770704992232869, inclination 1.5707963267948966 degrees
1 41465
2 50309
3 69522
4 78950
5 81344
6 77525
7 82002
8 81292
9 75877
10 66088
11 40651
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s 103 polyg 1 % Monthly surface radiation (W/sqm)
p 103 12 % Azimuth 0.0, inclination 0.0 degrees
1 47740
2 62850
3 98248
4 128582
5 158459
6 160602
7 165895
8 143702
9 112363
10 84877
11 48209
12 37870
s 104 polyg 1 % Monthly surface radiation (W/sqm)
p 104 12 % Azimuth 0.0, inclination 0.0 degrees
1 47492
2 62212
3 98155
4 127828
5 157249
6 157841
7 163273
8 142809
9 112341
10 84006
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s 105 polyg 1 % Monthly surface radiation (W/sqm)
p 105 12 % Azimuth 0.0, inclination 0.0 degrees
1 46797
2 60870
3 96066
4 127670
5 155955
6 155683
7 161123
8 142361
9 110950
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s 106 polyg 1 % Monthly surface radiation (W/sqm)
p 106 12 % Azimuth 0.0, inclination 0.0 degrees
1 48273
2 62529
3 99183
4 129079
5 158085
6 158521
7 164319
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9 113817
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11 48521
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s 107 polyg 1 % Monthly surface radiation (W/sqm)
p 107 12 % Azimuth -0.5770381306697495, inclination 1.5707963267948966 degrees
1 35726
2 46771
3 69088
4 73727
5 78798
6 79127
7 83318
8 76167
9 72773
10 64221
11 36210
12 30935
s 108 polyg 1 % Monthly surface radiation (W/sqm)
p 108 12 % Azimuth -0.5770381306697495, inclination 1.5707963267948966 degrees
1 36936
2 45186
3 63296
4 77241
5 85262
6 81904
7 87460
8 82571
9 71001
10 58191
11 37323
12 31449
s 109 polyg 1 % Monthly surface radiation (W/sqm)
p 109 12 % Azimuth 0.9937510589777222, inclination 1.5707963267948966 degrees
1 16164
2 20246
3 32253
4 45840
5 58422
6 64171
7 64611
8 51505
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11 16335
12 13660
s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth 0.9937510589777222, inclination 1.5707963267948966 degrees
1 15718
2 19661
3 32020
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7 59962
8 47813
9 35360
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11 15870
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s 111 polyg 1 % Monthly surface radiation (W/sqm)
p 111 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 112 polyg 1 % Monthly surface radiation (W/sqm)
p 112 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 113 polyg 1 % Monthly surface radiation (W/sqm)
p 113 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 114 polyg 1 % Monthly surface radiation (W/sqm)
p 114 12 % Azimuth 3.141592653589793, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
9 0.0
10 0.0
11 0.0
12 0.0
s 115 polyg 1 % Monthly surface radiation (W/sqm)
p 115 12 % Azimuth 0.9937712657480137, inclination 1.5707963267948966 degrees
1 17262
2 21930
3 35749
4 47632
5 60440
6 67607
7 67386
8 52803
9 40010
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11 17500
12 14570
s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth 0.9937712657480137, inclination 1.5707963267948966 degrees
1 17139
2 21648
3 34620
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7 66317
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9 39180
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s 117 polyg 1 % Monthly surface radiation (W/sqm)
p 117 12 % Azimuth 2.564547907796217, inclination 1.5707963267948966 degrees
1 19842
2 27348
3 43440
4 57120
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11 19973
12 16273
s 118 polyg 1 % Monthly surface radiation (W/sqm)
p 118 12 % Azimuth 2.564547907796217, inclination 1.5707963267948966 degrees
1 20020
2 27352
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6 77447
7 76735
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s 119 polyg 1 % Monthly surface radiation (W/sqm)
p 119 12 % Azimuth -2.1478248153375503, inclination 1.5707963267948966 degrees
1 60316
2 65525
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s 120 polyg 1 % Monthly surface radiation (W/sqm)
p 120 12 % Azimuth -2.1478248153375503, inclination 1.5707963267948966 degrees
1 59600
2 65134
3 81828
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5 84538
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7 82410
8 86148
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% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__15_insel.out' % File name
'*' % Fortran format

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@ -1,821 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
121 % Radiation surface 21
122 % Radiation surface 22
123 % Radiation surface 23
124 % Radiation surface 24
125 % Radiation surface 25
126 % Radiation surface 26
127 % Radiation surface 27
128 % Radiation surface 28
129 % Radiation surface 29
130 % Radiation surface 30
131 % Radiation surface 31
132 % Radiation surface 32
133 % Radiation surface 33
134 % Radiation surface 34
135 % Radiation surface 35
136 % Radiation surface 36
137 % Radiation surface 37
138 % Radiation surface 38
139 % Radiation surface 39
140 % Radiation surface 40
141 % Radiation surface 41
142 % Radiation surface 42
143 % Radiation surface 43
144 % Radiation surface 44
p 4
5532.015625 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
44 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
3 56.87891864776856 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 33.70465183258146 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 38.99863421917125 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 178.97694873809672 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 27.31925451755694 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 34.06071662902946 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 26.942433714866038 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 38.53035795688697 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 38.92838656902297 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
3 38.536232352256604 0.0 3.3842423894686265e-05 0.0 0 0 0 0.30000000000000004
1 44.80767163141027 0.0 0.07423253422638612 13.442301489423082 0 0.39683064590801465 0.328881 0.07999999999999996
1 44.807671631409995 0.0 0.07423253422638612 13.442301489422999 0 0.39683064590801465 0.328881 0.07999999999999996
2 26.942433714866038 0.0 0.07541464874089364 0.0 0 0 0 0
2 38.53035795688697 0.0 0.07541464874089364 0.0 0 0 0 0
2 38.92838656902297 0.0 0.07541464874089364 0.0 0 0 0 0
2 38.536232352256604 0.0 0.07541464874089364 0.0 0 0 0 0
2 56.87891864776856 0.0 0.07541464874089364 0.0 0 0 0 0
2 33.70465183258146 0.0 0.07541464874089364 0.0 0 0 0 0
2 178.97694873809672 0.0 0.07541464874089364 0.0 0 0 0 0
2 38.99863421917125 0.0 0.07541464874089364 0.0 0 0 0 0
2 27.31925451755694 0.0 0.07541464874089364 0.0 0 0 0 0
2 34.06071662902946 0.0 0.07541464874089364 0.0 0 0 0 0
1 50.02232660097029 0.0 0.07423253422638612 15.006697980291086 0 0.39683064590801465 0.328881 0.07999999999999996
1 50.022326600970736 0.0 0.07423253422638612 15.00669798029122 0 0.39683064590801465 0.328881 0.07999999999999996
1 35.82305392928121 0.0 0.07423253422638612 10.746916178784362 0 0.39683064590801465 0.328881 0.07999999999999996
1 35.82305392928181 0.0 0.07423253422638612 10.746916178784543 0 0.39683064590801465 0.328881 0.07999999999999996
1 50.02470211969934 0.0 0.07423253422638612 15.007410635909801 0 0.39683064590801465 0.328881 0.07999999999999996
1 50.02470211969993 0.0 0.07423253422638612 15.007410635909979 0 0.39683064590801465 0.328881 0.07999999999999996
1 43.7509891961839 0.0 0.07423253422638612 13.12529675885517 0 0.39683064590801465 0.328881 0.07999999999999996
1 43.75098919618435 0.0 0.07423253422638612 13.125296758855304 0 0.39683064590801465 0.328881 0.07999999999999996
1 237.84982245469925 0.0 0.07423253422638612 71.35494673640977 0 0.39683064590801465 0.328881 0.07999999999999996
1 237.8498224546999 0.0 0.07423253422638612 71.35494673640997 0 0.39683064590801465 0.328881 0.07999999999999996
1 43.79964079028244 0.0 0.07423253422638612 13.139892237084732 0 0.39683064590801465 0.328881 0.07999999999999996
1 43.79964079028219 0.0 0.07423253422638612 13.139892237084657 0 0.39683064590801465 0.328881 0.07999999999999996
1 75.5452318293476 0.0 0.07423253422638612 22.66356954880428 0 0.39683064590801465 0.328881 0.07999999999999996
1 75.54523182934666 0.0 0.07423253422638612 22.663569548804 0 0.39683064590801465 0.328881 0.07999999999999996
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1 50.02230199402022 0.0 0.07423253422638612 15.006690598206065 0 0.39683064590801465 0.328881 0.07999999999999996
1 36.283690240556794 0.0 0.07423253422638612 10.885107072167038 0 0.39683064590801465 0.328881 0.07999999999999996
1 36.28369024055446 0.0 0.07423253422638612 10.885107072166338 0 0.39683064590801465 0.328881 0.07999999999999996
1 45.270590039886336 0.0 0.07423253422638612 13.5811770119659 0 0.39683064590801465 0.328881 0.07999999999999996
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1 50.07896543598568 0.0 0.07423253422638612 15.023689630795703 0 0.39683064590801465 0.328881 0.07999999999999996
1 50.0789654359859 0.0 0.07423253422638612 15.023689630795769 0 0.39683064590801465 0.328881 0.07999999999999996
s 20 polyg 1
p 20 12 % Monthly ambient temperature
1 0.1388833522894489
2 0.8253312650631995
3 5.049363812797564
4 11.215108507260004
5 16.77438382580644
6 21.961446563611123
7 24.812365742473112
8 23.77130604260751
9 20.166688549722227
10 14.760234274583324
11 8.599390164833329
12 1.8664905226848094
s 21 polyg 1
p 21 12 % Monthly sky temperature
1 -16.076913199648175
2 -15.21147269922151
3 -9.933090693841589
4 -2.132949752599609
5 4.943461486249397
6 11.595246783694925
7 15.267063262153538
8 13.923356695706257
9 9.285486888525977
10 2.3706575244978043
11 -5.45718035991585
12 -13.91386612162487
s 101 polyg 1 % Monthly surface radiation (W/sqm)
p 101 12 % Azimuth 3.141592653589793, inclination 0.0 degrees
1 42994
2 56574
3 90073
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7 153028
8 131451
9 102520
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12 35948
s 102 polyg 1 % Monthly surface radiation (W/sqm)
p 102 12 % Azimuth 3.141592653589793, inclination 0.0 degrees
1 37962
2 51561
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s 103 polyg 1 % Monthly surface radiation (W/sqm)
p 103 12 % Azimuth 0.0, inclination 0.0 degrees
1 41006
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s 104 polyg 1 % Monthly surface radiation (W/sqm)
p 104 12 % Azimuth 0.0, inclination 0.0 degrees
1 47722
2 62000
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7 161930
8 141448
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11 48419
12 37647
s 105 polyg 1 % Monthly surface radiation (W/sqm)
p 105 12 % Azimuth 0.0, inclination 0.0 degrees
1 39878
2 56074
3 92583
4 114738
5 132958
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s 106 polyg 1 % Monthly surface radiation (W/sqm)
p 106 12 % Azimuth 0.0, inclination 0.0 degrees
1 40893
2 54018
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s 107 polyg 1 % Monthly surface radiation (W/sqm)
p 107 12 % Azimuth 0.0, inclination 0.0 degrees
1 41166
2 53129
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s 108 polyg 1 % Monthly surface radiation (W/sqm)
p 108 12 % Azimuth 0.0, inclination 0.0 degrees
1 43181
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s 109 polyg 1 % Monthly surface radiation (W/sqm)
p 109 12 % Azimuth 0.0, inclination 0.0 degrees
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s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth 0.0, inclination 0.0 degrees
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s 111 polyg 1 % Monthly surface radiation (W/sqm)
p 111 12 % Azimuth 2.672977545301097, inclination 1.5707963267948966 degrees
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s 112 polyg 1 % Monthly surface radiation (W/sqm)
p 112 12 % Azimuth 2.672977545301097, inclination 1.5707963267948966 degrees
1 21138
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s 113 polyg 1 % Monthly surface radiation (W/sqm)
p 113 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
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6 0.0
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10 0.0
11 0.0
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s 114 polyg 1 % Monthly surface radiation (W/sqm)
p 114 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
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4 0.0
5 0.0
6 0.0
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10 0.0
11 0.0
12 0.0
s 115 polyg 1 % Monthly surface radiation (W/sqm)
p 115 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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10 0.0
11 0.0
12 0.0
s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
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8 0.0
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10 0.0
11 0.0
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s 117 polyg 1 % Monthly surface radiation (W/sqm)
p 117 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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10 0.0
11 0.0
12 0.0
s 118 polyg 1 % Monthly surface radiation (W/sqm)
p 118 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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11 0.0
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s 119 polyg 1 % Monthly surface radiation (W/sqm)
p 119 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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s 120 polyg 1 % Monthly surface radiation (W/sqm)
p 120 12 % Azimuth 0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
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s 121 polyg 1 % Monthly surface radiation (W/sqm)
p 121 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
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4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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10 0.0
11 0.0
12 0.0
s 122 polyg 1 % Monthly surface radiation (W/sqm)
p 122 12 % Azimuth -0.0, inclination 3.141592653589793 degrees
1 0.0
2 0.0
3 0.0
4 0.0
5 0.0
6 0.0
7 0.0
8 0.0
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10 0.0
11 0.0
12 0.0
s 123 polyg 1 % Monthly surface radiation (W/sqm)
p 123 12 % Azimuth 1.1029109562289032, inclination 1.5707963267948966 degrees
1 13570
2 16790
3 24963
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9 27037
10 20724
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s 124 polyg 1 % Monthly surface radiation (W/sqm)
p 124 12 % Azimuth 1.1029109562289032, inclination 1.5707963267948966 degrees
1 15242
2 18865
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12 12895
s 125 polyg 1 % Monthly surface radiation (W/sqm)
p 125 12 % Azimuth 2.6729809194112355, inclination 1.5707963267948966 degrees
1 15003
2 20409
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9 35549
10 25498
11 15628
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1 12177
2 15183
3 22885
4 31338
5 44230
6 47681
7 46796
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11 12353
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2 54935
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2 52533
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2 51848
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2 61873
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% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__169_insel.out' % File name
'*' % Fortran format

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@ -1,413 +0,0 @@
s 1 do
p 1 1 12 1
s 4 d18599 1 20 21
101 % Radiation surface 1
102 % Radiation surface 2
103 % Radiation surface 3
104 % Radiation surface 4
105 % Radiation surface 5
106 % Radiation surface 6
107 % Radiation surface 7
108 % Radiation surface 8
109 % Radiation surface 9
110 % Radiation surface 10
111 % Radiation surface 11
112 % Radiation surface 12
113 % Radiation surface 13
114 % Radiation surface 14
115 % Radiation surface 15
116 % Radiation surface 16
117 % Radiation surface 17
118 % Radiation surface 18
119 % Radiation surface 19
120 % Radiation surface 20
p 4
8708.776041666666 % BP(1) Heated Volume (vBrutto)
3.05 % BP(2) Average storey height / m
3 % BP(3) Number of storeys above ground
0 % BP(4) Attic heating type (0=no room, 1=unheated, 2=heated)
0 % BP(5) Cellar heating type (0=no room, 1=unheated, 2=heated, 99=invalid)
0.15 % BP(6) Indirectly heated area ratio
90 % BP(7) Effective heat capacity
0.05 % BP(8) Additional U-value for heat bridge
1 % BP(10) Number $z$ of zones
20 % Number of surfaces = BP(11+8z)
% 1. Surface type (1=wall, 2=ground 3=roof, 4=flat roof)
% 2. Areas above ground
% 3. Areas below ground
% 4. U-value
% 5. Window area
% 6. Window frame fraction
% 7. Window U-value
% 8. Window g-value
% 9. Short-wave reflectance
% #1 #2 #3 #4 #5 #6 #7 #8 #9
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p 20 12 % Monthly ambient temperature
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% ONE YEAR
s 300 cum 4.1 4.2
s 303 atend 300.1 300.2
s 304 screen 303.1 303.2 4.5
p 304 '(''Yearly results: qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1 meanUvalue = '',F6.3)'
% MONTHLY
s 305 screen 4.1 4.2
p 305 '(''qh = '',F13.2,'' qc = ''F13.2,'' kWh a^-1'')'
s 310 WRITE
4.1 4.2
p 301
1 % Mode
0 % Suppress FNQ inputs
'/home/pilar/PycharmProjects/MonthlyEnergyBalance/examples/NYC_20buildings/outputs/GBP__3_insel.out' % File name
'*' % Fortran format

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@ -1,611 +0,0 @@
<?xml version="1.0" encoding="ISO-8859-1"?>
<CitySim name="Project 1">
<Simulation beginMonth="1" endMonth="12" beginDay="1" endDay="31"/>
<Climate location="Basel.cli" city="Basel"/>
<District>
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@ -1,100 +0,0 @@
%Thermal Demand Dynamic Calculation
%by Pilar Monsalvete
S 1 CLOCK
P 1
2005 %[YearIni]
1 %[MonthIni]
1 %[DayIni]
0 %[HourIni]
0 %[MinIni]
0 %[SecIni]
2005 %[YearEnd]
12 %[MonthEnd]
31 %[DayEnd]
24 %[HourEnd]
60 %[MinEnd]
60 %[SecEnd]
5 %[Incr]
'm' %[Unit]
S 2 MOY
1.1
1.2
1.3
1.4
1.5
S 3 GAIN
2.1
P 3
60 %[MinToSec]
S 4 HOY
1.1
1.2
1.3
1.4
S 5 READD
4.1
P 5
1000 %[Nrec]
12000 %[RecLen]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/third_party_files/insel/GBP__15.weather' %[FileName]
'(1000F12.3)' %[FileFormat]
S 6 READD
4.1
P 6
5 %[Nrec]
60 %[RecLen]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/third_party_files/insel/GBP__15.ig' %[FileName]
'(5F12.3)' %[FileFormat]
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1.1
1.2
1.3
1.4
9.2
9.3
P 7
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__15_demand.out' %[FileName]
'*' %[FileFormat]
S 8 WRITE
1.1
1.2
1.3
1.4
10.2
P 8
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__15_temp.out' %[FileName]
'*' %[FileFormat]
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4.1
17.2
17.3
S 10 AVEC
4.1
17.1
S 11 CUMC
1.2
9.2
9.3
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11.2
10.3
S 13 ATT
12.1
P 13
1000000 %Wh to MWh
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1.1
1.2
13.1
P 14
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__15_month.out' %[FileName]
'*' %[FileFormat]
S 15 WRITE
P 15
0 %[ZeroConst]

View File

@ -1,100 +0,0 @@
%Thermal Demand Dynamic Calculation
%by Pilar Monsalvete
S 1 CLOCK
P 1
2005 %[YearIni]
1 %[MonthIni]
1 %[DayIni]
0 %[HourIni]
0 %[MinIni]
0 %[SecIni]
2005 %[YearEnd]
12 %[MonthEnd]
31 %[DayEnd]
24 %[HourEnd]
60 %[MinEnd]
60 %[SecEnd]
5 %[Incr]
'm' %[Unit]
S 2 MOY
1.1
1.2
1.3
1.4
1.5
S 3 GAIN
2.1
P 3
60 %[MinToSec]
S 4 HOY
1.1
1.2
1.3
1.4
S 5 READD
4.1
P 5
1000 %[Nrec]
12000 %[RecLen]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/third_party_files/insel/GBP__169.weather' %[FileName]
'(1000F12.3)' %[FileFormat]
S 6 READD
4.1
P 6
5 %[Nrec]
60 %[RecLen]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/third_party_files/insel/GBP__169.ig' %[FileName]
'(5F12.3)' %[FileFormat]
S 7 WRITE
1.1
1.2
1.3
1.4
9.2
9.3
P 7
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__169_demand.out' %[FileName]
'*' %[FileFormat]
S 8 WRITE
1.1
1.2
1.3
1.4
10.2
P 8
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__169_temp.out' %[FileName]
'*' %[FileFormat]
S 9 AVEC
4.1
17.2
17.3
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4.1
17.1
S 11 CUMC
1.2
9.2
9.3
S 12 SUM
11.2
10.3
S 13 ATT
12.1
P 13
1000000 %Wh to MWh
S 14 WRITE
1.1
1.2
13.1
P 14
1 %[Mode]
0 %[Suppress FNQ inputs]
'/home/pilar/PycharmProjects/DynamicBuildingSimulation/examples/NYC_2buildings/outputs/GBP__169_month.out' %[FileName]
'*' %[FileFormat]
S 15 WRITE
P 15
0 %[ZeroConst]

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@ -1,2 +0,0 @@
celsius2kelvin = 273.15
days_of_month = [31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31]

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@ -1,13 +0,0 @@
class LibraryCodes(object):
construction_code = {
'Wall': '1',
'Ground': '2',
'Roof': '3',
'interior wall': '5',
'ground wall': '6',
'attic floor': '7',
'interior slab': '8'
}
def construction_types_to_code(self, construction_type):
return self.construction_code[construction_type]

View File

@ -1,32 +0,0 @@
import pandas as pd
import numpy as np
import helpers.constants as cte
class MonthlyValues:
def __init__(self):
self._month_hour = None
@staticmethod
def get_mean_values(values):
out = None
if values is not None:
out = pd.DataFrame(values).groupby('month', as_index=False).mean()
return out
@staticmethod
def get_total_month(values):
out = None
if values is not None:
out = pd.DataFrame(values).groupby('month', as_index=False).sum()
return out
@property
def month_hour(self):
if self._month_hour is None:
array = []
for i in range(0, 12):
total_hours = cte.days_of_month[i] * 24
array = np.concatenate((array, np.full(total_hours, i + 1)))
self._month_hour = pd.DataFrame(array, columns=['month'])
return self._month_hour

26
init.py
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@ -1,26 +0,0 @@
from geometry.geometry_factory import GeometryFactory
from physics.physics_factory import PhysicsFactory
from usage.usage_factory import UsageFactory
import pyproj
import reverse_geocoder as rg
class Init:
def __init__(self, geometry_path):
self._geometry_path = geometry_path
self._city = None
@property
def handler(self):
if self.city.name == 'New York City':
handler = '{0}_{1}'
return handler.format(self.city.country_code, self.city.name.lower().replace(' ', '_'))
return self.city.country_code
@property
def city(self):
if self._city is None:
self._city = GeometryFactory('citygml', self._geometry_path).city
PhysicsFactory(self.handler, self._city)
UsageFactory(self.handler, self._city)
return self._city

69
main.py
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@ -1,42 +1,65 @@
import sys import sys
import ast
from insel.insel import Insel from insel.insel import Insel
from pathlib import Path from pathlib import Path
from init import Init from populate import Populate
from simplified_radiosity_algorithm.simplified_radiosity_algorithm import SimplifiedRadiosityAlgorithm as Sra from simplified_radiosity_algorithm import SimplifiedRadiosityAlgorithm
from weather.weather import Weather as Wt from imports.weather_factory import WeatherFactory
from insel.templates.thermal_demand_dynamic_simulation import ThermalDemandDynamicSimulation as Templates from insel.templates.thermal_demand_dynamic_simulation import ThermalDemandDynamicSimulation as Templates
from helpers.simulation_parameters import SimulationParameters as Sp from helpers.simulation_parameters import SimulationParameters as Sp
import helpers.constants as cte
from imports.geometry_factory import GeometryFactory
name_gml = '2050 bp_2buildings' name_gml = 'one_building_in_kelowna.gml'
name_cli = 'inseldb_New_York_City.cli' example_path = Path(__file__).parent
name_weather = 'inseldb_New_York_City.dat' full_path_gml = (example_path / 'tests' / 'tests_data' / name_gml).resolve()
example_path = (Path(__file__).parent / 'examples/NYC_2buildings').resolve() outputs_path = (example_path / 'tests' / 'tests_outputs').resolve()
full_path_gml = (example_path / 'inputs' / ('buildings.gml')).resolve()
full_path_cli = (example_path / 'inputs' / name_cli).resolve()
full_path_weather = (example_path / 'inputs' / name_weather).resolve()
outputs_path = (example_path / 'outputs').resolve()
keep_files = True keep_files = True
# Initialize the city model and add thermal- and usage-related parameters # Initialize the city model and add thermal- and usage-related parameters
# todo: add several steps: # todo: add several steps:
# - simplification of the data model (for all work-flows) # - simplification of the data model (for all work-flows)
# - internal zoning of buildings (for dynamic simulation only) # - internal zoning of buildings (for dynamic simulation only)
city = Init(full_path_gml).city city = GeometryFactory('citygml', full_path_gml).city
# Climate-related parameters populated_city = Populate(city).populated_city
# todo: define full_path_cli and any other weather related parameter according to the city_name in city print(len(city.buildings))
hourly_temperatures = Wt(full_path_weather).weather_temperatures quit()
sra_working_path = (example_path / 'third_party_files/sra').resolve()
sra_file_name = 'SRA'
sra = Sra(sra_working_path, sra_file_name, full_path_cli, city.city_objects, lower_corner=city.lower_corner)
# todo: change this with if sra_file_exists. Using it now only internally.
sra_calculated = True weather_format = 'epw'
if sra_calculated: city.climate_reference_city = args.climate_reference_city
path = (Path(args.project_folder) / 'tmp').resolve()
city.climate_file = (path / f'{args.climate_reference_city}.cli').resolve()
WeatherFactory(weather_format, populated_city, file_name=args.weather_file_name).enrich()
for building in populated_city.buildings:
if cte.HOUR not in building.external_temperature:
print('No external temperature found')
sys.exit()
if cte.MONTH not in building.external_temperature:
building.external_temperature[cte.MONTH] = mv.MonthlyValues().\
get_mean_values(building.external_temperature[cte.MONTH][[weather_format]])
max_buildings_handled_by_sra = 500
for building in city.buildings:
for surface in building.surfaces:
surface.swr = 0.2
sra = SimplifiedRadiosityAlgorithm(city, Path(args.project_folder).resolve(), args.weather_file_name)
if ast.literal_eval(args.use_cached_sra_file):
sra.results() sra.results()
sra.set_irradiance_surfaces(populated_city)
else: else:
sra.call_sra(keep_files=keep_files) total_number_of_buildings = len(city.buildings)
sra.set_irradiance_surfaces(city) if total_number_of_buildings > max_buildings_handled_by_sra:
radius = 80
for building in city.buildings:
new_city = city.region(building.centroid, radius)
sra_new = SimplifiedRadiosityAlgorithm(new_city, Path(args.project_folder).resolve(), args.weather_file_name)
sra_new.call_sra(weather_format, keep_files=True)
sra_new.set_irradiance_surfaces(populated_city, building_name=building.name)
else:
sra.call_sra(weather_format, keep_files=keep_files)
sra.set_irradiance_surfaces(populated_city)
# Demand calculation (one model per building) # Demand calculation (one model per building)
for city_object in city.city_objects: for city_object in city.city_objects:

59
populate.py Normal file
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@ -0,0 +1,59 @@
"""
Populate city
SPDX - License - Identifier: LGPL - 3.0 - or -later
Copyright © 2020 Project Author Pilar Monsalvete pilar_monsalvete@yahoo.es
"""
from imports.physics_factory import PhysicsFactory
from imports.usage_factory import UsageFactory
from city_model_structure.city import City
class Populate:
def __init__(self, city):
self._city = city
self._populated_city = None
self._errors = []
@property
def handler(self):
if self._city.name == 'New York':
handler = '{0}_{1}'
return handler.format(self._city.country_code, self._city.name.lower().replace(' ', '_'))
return self._city.country_code
@property
def errors(self):
return self._errors
@property
def populated_city(self):
if self._populated_city is None:
self._errors = []
# Step 2.1: Thermal parameters
tmp_city = City(self._city.lower_corner, self._city.upper_corner, self._city.srs_name)
PhysicsFactory(self.handler, self._city)
print('original:', len(self._city.buildings))
for building in self._city.buildings:
# infiltration_rate_system_off is a mandatory parameter.
# If it is not returned, extract the building from the calculation list
if building.thermal_zones[0].infiltration_rate_system_off is not None:
tmp_city.add_city_object(building)
if tmp_city.buildings is None:
self._populated_city = tmp_city
return self._populated_city
# Step 2.2: Usage parameters
print('physics:', len(tmp_city.buildings))
UsageFactory(self.handler, tmp_city)
self._populated_city = City(self._city.lower_corner, self._city.upper_corner, self._city.srs_name)
for building in tmp_city.buildings:
# heating_setpoint is a mandatory parameter.
# If it is not returned, extract the building from the calculation list
if len(building.usage_zones) > 0:
self._populated_city.add_city_object(building)
if self._populated_city.buildings is None:
self._errors.append('no archetype found per usage')
print('usage:', len(tmp_city.buildings))
return self._populated_city

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@ -1,171 +0,0 @@
import os
import shutil
from pathlib import Path
import pandas as pd
from helpers import monthly_values as mv
import subprocess
import xmltodict
from collections import OrderedDict
from subprocess import SubprocessError, TimeoutExpired, CalledProcessError
class SimplifiedRadiosityAlgorithm:
_executable = 'citysim_sra'
def __init__(self, sra_working_path, sra_file_name, full_path_cli, city_objects=None,
begin_month=1, begin_day=1, end_month=12, end_day=31, lower_corner=None):
self._full_path_cli = full_path_cli
self._begin_month = begin_month
self._begin_day = begin_day
self._end_month = end_month
self._end_day = end_day
if lower_corner is None:
lower_corner = [0, 0, 0]
self._lower_corner = lower_corner
self._sra_working_path = sra_working_path
self._full_path_in_sra = (sra_working_path / 'tmp' / (sra_file_name + '.xml')).resolve()
self._sra_out_file_name = sra_file_name + '_SW.out'
self._full_path_out_sra = (sra_working_path / 'cache' / self._sra_out_file_name).resolve()
self._out_values = None
self._radiation = None
self._content = OrderedDict()
climate = OrderedDict()
climate['@location'] = self._full_path_cli
climate['@city'] = self.city
simulation = OrderedDict()
simulation['@beginMonth'] = begin_month
simulation['@beginDay'] = begin_day
simulation['@endMonth'] = end_month
simulation['@endDay'] = end_day
city_sim = OrderedDict()
city_sim['@name'] = sra_file_name + '.xml'
city_sim['Simulation'] = simulation
city_sim['Climate'] = climate
self._content['CitySim'] = city_sim
if city_objects is not None:
self.add_city_objects(city_objects)
self.save()
def call_sra(self, keep_files=False):
try:
completed = subprocess.run([self._executable, self._full_path_in_sra])
except (SubprocessError, TimeoutExpired, CalledProcessError) as error:
raise Exception(error)
file = (Path(self._sra_working_path) / 'tmp' / self._sra_out_file_name).resolve()
new_path = (Path(self._sra_working_path) / 'cache').resolve()
try:
shutil.move(str(file), str(new_path))
except:
raise Exception('No SRA output file found')
self._out_values = self.results()
if not keep_files:
os.remove(self._full_path_in_sra)
return completed
def results(self):
if self._out_values is None:
try:
self._out_values = pd.read_csv(self._full_path_out_sra, sep='\s+', header=0)
except:
raise Exception('No SRA output file found')
return self._out_values
@property
def radiation(self):
if self._radiation is None:
self._radiation = []
id_building = ''
header_building = []
for column in self._out_values.columns.values:
if id_building != column.split(':')[1]:
id_building = column.split(':')[1]
if len(header_building) > 0:
self._radiation.append(pd.concat([mv.MonthlyValues().month_hour, self._out_values[header_building]],
axis=1))
header_building = [column]
else:
header_building.append(column)
self._radiation.append(pd.concat([mv.MonthlyValues().month_hour, self._out_values[header_building]], axis=1))
return self._radiation
# mode = 0, set only monthly values
# mode = 1, set only hourly values
# mode = 2, set both
def set_irradiance_surfaces(self, city, mode=0):
for radiation in self.radiation:
building_name = radiation.columns.values.tolist()[1].split(':')[1]
city_object = city.city_object(building_name)
for column in radiation.columns.values:
if column == 'month':
continue
header_name = column
surface_name = header_name.split(':')[2]
surface = city_object.surface(surface_name)
if mode == 0 or mode == 2:
df = mv.MonthlyValues.get_total_month(radiation[['month', header_name]])
surface.global_irradiance_month = [gim[0] for gim in df[[header_name]].to_numpy()]
if mode == 1 or mode == 2:
df = radiation[[header_name]]
surface.global_irradiance_hour = df[[header_name]].to_numpy()
return
@property
def content(self):
return xmltodict.unparse(self._content, pretty=True, short_empty_elements=True)
def save(self):
with open(self._full_path_in_sra, "w") as sra_file:
sra_file.write(self.content)
return
def _correct_points(self, points):
# correct the x, y, z values into the reference frame set by lower_corner parameter
# [0, 0, 0] by default means no correction.
points[0] = points[0] - self._lower_corner[0]
points[1] = points[1] - self._lower_corner[1]
points[2] = points[2] - self._lower_corner[2]
return points
def add_city_objects(self, city_objects):
buildings = []
for i in range(len(city_objects)):
city_object = city_objects[i]
building = OrderedDict()
building['@Name'] = city_object.name
building['@id'] = i
building['@key'] = city_object.name
building['@Simulate'] = 'True'
walls, roofs, floors = [], [], []
for s in city_object.surfaces:
surface = OrderedDict()
surface['@id'] = s.name
surface['@ShortWaveReflectance'] = s.swr
for j in range(len(s.points - 1)):
points = self._correct_points(s.points[j])
vertex = OrderedDict()
vertex['@x'] = points[0]
vertex['@y'] = points[1]
vertex['@z'] = points[2]
surface['V' + str(j)] = vertex
if s.type == 'Wall':
walls.append(surface)
elif s.type == 'Roof':
roofs.append(surface)
else:
floors.append(surface)
building['Wall'] = walls
building['Roof'] = roofs
building['Floor'] = floors
buildings.append(building)
district = OrderedDict()
district['FarFieldObstructions'] = None
district['Building'] = buildings
self._content['CitySim']['District'] = district
return
@property
def city(self):
with open(self._full_path_cli, 'r') as file:
return file.readline().replace('\n', '')

View File

@ -0,0 +1,409 @@
<?xml version="1.0" encoding="UTF-8"?>
<core:CityModel xmlns:brid="http://www.opengis.net/citygml/bridge/2.0" xmlns:tran="http://www.opengis.net/citygml/transportation/2.0" xmlns:frn="http://www.opengis.net/citygml/cityfurniture/2.0" xmlns:wtr="http://www.opengis.net/citygml/waterbody/2.0" xmlns:sch="http://www.ascc.net/xml/schematron" xmlns:veg="http://www.opengis.net/citygml/vegetation/2.0" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:tun="http://www.opengis.net/citygml/tunnel/2.0" xmlns:tex="http://www.opengis.net/citygml/texturedsurface/2.0" xmlns:gml="http://www.opengis.net/gml" xmlns:gen="http://www.opengis.net/citygml/generics/2.0" xmlns:dem="http://www.opengis.net/citygml/relief/2.0" xmlns:app="http://www.opengis.net/citygml/appearance/2.0" xmlns:luse="http://www.opengis.net/citygml/landuse/2.0" xmlns:xAL="urn:oasis:names:tc:ciq:xsdschema:xAL:2.0" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:smil20lang="http://www.w3.org/2001/SMIL20/Language" xmlns:pbase="http://www.opengis.net/citygml/profiles/base/2.0" xmlns:smil20="http://www.w3.org/2001/SMIL20/" xmlns:bldg="http://www.opengis.net/citygml/building/2.0" xmlns:core="http://www.opengis.net/citygml/2.0" xmlns:grp="http://www.opengis.net/citygml/cityobjectgroup/2.0">
<gml:boundedBy>
<gml:Envelope srsName="EPSG:26911" srsDimension="3">
<gml:lowerCorner>326011.03601000085 5526048.416990001 -1.6000000000058208</gml:lowerCorner>
<gml:upperCorner>329466.6600299999 5529018.72205 9.80000000000291</gml:upperCorner>
</gml:Envelope>
</gml:boundedBy>
<core:cityObjectMember>
<bldg:Building gml:id="BLD109438">
<gen:doubleAttribute name="gross_floor_area">
<gen:value>291</gen:value>
</gen:doubleAttribute>
<gen:stringAttribute name="gross_floor_raea_unit">
<gen:value>m2</gen:value>
</gen:stringAttribute>
<bldg:function>residential</bldg:function>
<bldg:yearOfConstruction>1996</bldg:yearOfConstruction>
<bldg:measuredHeight>5.3</bldg:measuredHeight>
<bldg:storeysAboveGround>1</bldg:storeysAboveGround>
<bldg:lod2Solid>
<gml:Solid srsName="EPSG:26911" srsDimension="3">
<gml:exterior>
<gml:CompositeSurface>
<gml:surfaceMember xlink:href="#UUID_854e7876-bcb7-43f5-9f4b-7c55803cf04f"/>
<gml:surfaceMember xlink:href="#UUID_50045e42-87aa-4aa4-b179-99d03a5569df"/>
<gml:surfaceMember xlink:href="#UUID_6138b267-e734-4830-98f8-a79fc4d38da4"/>
<gml:surfaceMember xlink:href="#UUID_7e4a20ee-4581-4e9a-a661-3e80c79ae226"/>
<gml:surfaceMember xlink:href="#UUID_770546ef-e544-4d39-8747-e5c6c88d5725"/>
<gml:surfaceMember xlink:href="#UUID_0f22b07c-8bd5-43d1-8904-c96a5a0456ce"/>
<gml:surfaceMember xlink:href="#UUID_b6219259-c948-487a-96dc-25f9ce257974"/>
<gml:surfaceMember xlink:href="#UUID_d806c8f3-93e1-4155-ab28-743fed870f6b"/>
<gml:surfaceMember xlink:href="#UUID_da660fbf-9aea-4895-8d9c-cf5fab95862e"/>
<gml:surfaceMember xlink:href="#UUID_6315337c-3919-423e-9e46-35fc5f005b7d"/>
<gml:surfaceMember xlink:href="#UUID_6bed5c5e-9ee9-4b3a-bfbc-fac54c0f2090"/>
<gml:surfaceMember xlink:href="#UUID_8f4f6388-d576-4ded-925a-fd01d43e3c11"/>
<gml:surfaceMember xlink:href="#UUID_ad685374-7888-41cf-8464-48c037230174"/>
<gml:surfaceMember xlink:href="#UUID_1b440294-d10f-49e2-9c65-78aa0a57a389"/>
<gml:surfaceMember xlink:href="#UUID_4d4017ed-3a71-43c7-a79c-04acd9f86433"/>
<gml:surfaceMember xlink:href="#UUID_b7c0600b-0c3b-4b8c-8f5f-11d8f774966e"/>
<gml:surfaceMember xlink:href="#UUID_18f19ab4-f128-41a0-ab05-34d91ad061b9"/>
<gml:surfaceMember xlink:href="#UUID_e5b962d8-6186-4e78-ae08-fc0c00484e8c"/>
<gml:surfaceMember xlink:href="#UUID_eebbc322-bf68-4c56-a826-392b617db97c"/>
<gml:surfaceMember xlink:href="#UUID_16a00d48-90a4-4cd1-94e6-0654a5b9b1d2"/>
<gml:surfaceMember xlink:href="#UUID_4832dea6-f237-45ec-a711-ce1fc27b7e3b"/>
</gml:CompositeSurface>
</gml:exterior>
</gml:Solid>
</bldg:lod2Solid>
<bldg:boundedBy>
<bldg:RoofSurface gml:id="UUID_2e3a196c-b5b1-4ee4-af82-329ced61e624">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_854e7876-bcb7-43f5-9f4b-7c55803cf04f">
<gml:exterior>
<gml:LinearRing>
<gml:posList>329231.5010599997 5528270.404139999 4.311470000000554 329229.15295 5528271.14002 3.8000000000029104 329229.30395000055 5528269.304020001 3.8000000000029104 329231.5010599997 5528270.404139999 4.311470000000554</gml:posList>
</gml:LinearRing>
</gml:exterior>
</gml:Polygon>
</gml:surfaceMember>
</gml:MultiSurface>
</bldg:lod2MultiSurface>
</bldg:RoofSurface>
</bldg:boundedBy>
<bldg:boundedBy>
<bldg:RoofSurface gml:id="UUID_9a4410b3-f53c-468a-aef9-1e9f1ba88748">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_50045e42-87aa-4aa4-b179-99d03a5569df">
<gml:exterior>
<gml:LinearRing>
<gml:posList>329248.8121399991 5528267.658840001 4.925719999999274 329254.11205999926 5528262.99903 3.8000000000029104 329253.52796000056 5528272.956 3.8000000000029104 329248.8121399991 5528267.658840001 4.925719999999274</gml:posList>
</gml:LinearRing>
</gml:exterior>
</gml:Polygon>
</gml:surfaceMember>
</gml:MultiSurface>
</bldg:lod2MultiSurface>
</bldg:RoofSurface>
</bldg:boundedBy>
<bldg:boundedBy>
<bldg:WallSurface gml:id="UUID_d4f2198a-dd18-4fe2-a1f3-33f47393cb22">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_6138b267-e734-4830-98f8-a79fc4d38da4">
<gml:exterior>
<gml:LinearRing>
<gml:posList>329246.16602000035 5528272.533020001 0 329246.16602000035 5528272.533020001 3.8000000000029104 329253.52796000056 5528272.956 3.8000000000029104 329253.52796000056 5528272.956 0 329246.16602000035 5528272.533020001 0</gml:posList>
</gml:LinearRing>
</gml:exterior>
</gml:Polygon>
</gml:surfaceMember>
</gml:MultiSurface>
</bldg:lod2MultiSurface>
</bldg:WallSurface>
</bldg:boundedBy>
<bldg:boundedBy>
<bldg:WallSurface gml:id="UUID_3d62148d-9d75-455f-86aa-1c0877942853">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_7e4a20ee-4581-4e9a-a661-3e80c79ae226">
<gml:exterior>
<gml:LinearRing>
<gml:posList>329241.7199700009 5528276.307010001 0 329241.7199700009 5528276.307010001 3.8000000000029104 329246.16602000035 5528272.533020001 3.8000000000029104 329246.16602000035 5528272.533020001 0 329241.7199700009 5528276.307010001 0</gml:posList>
</gml:LinearRing>
</gml:exterior>
</gml:Polygon>
</gml:surfaceMember>
</gml:MultiSurface>
</bldg:lod2MultiSurface>
</bldg:WallSurface>
</bldg:boundedBy>
<bldg:boundedBy>
<bldg:WallSurface gml:id="UUID_b59d0530-9980-46ae-8452-e0a07cfdf84d">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_770546ef-e544-4d39-8747-e5c6c88d5725">
<gml:exterior>
<gml:LinearRing>
<gml:posList>329237.9890100006 5528272.159 0 329237.9890100006 5528272.159 3.8000000000029104 329241.7199700009 5528276.307010001 3.8000000000029104 329241.7199700009 5528276.307010001 0 329237.9890100006 5528272.159 0</gml:posList>
</gml:LinearRing>
</gml:exterior>
</gml:Polygon>
</gml:surfaceMember>
</gml:MultiSurface>
</bldg:lod2MultiSurface>
</bldg:WallSurface>
</bldg:boundedBy>
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4
tests/tests_outputs/.gitignore vendored Normal file
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@ -0,0 +1,4 @@
# Ignore everything in this directory
*
# Except this file
!.gitignore

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@ -1,34 +0,0 @@
import math
import pandas as pd
import helpers.constants as cte
from helpers import monthly_values as mv
class Weather(object):
def __init__(self, full_path_weather):
self._full_path_weather = full_path_weather
if self._full_path_weather is not None:
# TODO: catch error if file does not exist
self._weather_values = pd.read_csv(self._full_path_weather, sep='\s+', header=None,
names=['hour', 'global_horiz', 'temperature', 'diffuse', 'beam', 'empty'])
self._weather_values = pd.concat([mv.MonthlyValues().month_hour, self._weather_values], axis=1)
@property
def weather_temperatures(self):
temperatures_hourly = self._weather_values[['month', 'temperature']]
sky_temperature = self.calculate_sky_temperature(temperatures_hourly)
temperatures_hourly = pd.concat([temperatures_hourly, sky_temperature], axis=1)
return temperatures_hourly
@staticmethod
def calculate_sky_temperature(ambient_temperature):
# Swinbank - Fuentes sky model approximation(1963) based on cloudiness statistics(32 %) in United States
# ambient temperatures( in °C)
# sky temperatures( in °C)
_ambient_temperature = ambient_temperature[['temperature']].to_numpy()
values = []
for temperature in _ambient_temperature:
value = 0.037536 * math.pow((temperature + cte.celsius2kelvin), 1.5) \
+ 0.32 * (temperature + cte.celsius2kelvin) - cte.celsius2kelvin
values.append(value)
return pd.DataFrame(values, columns=['sky temperature'])