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="15" type="exterior wall" >
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<construction id="15" type="exterior wall" >
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<construction id="2" type="exterior wall" >
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<archetype id="26" building_type="quick service restaurant" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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<construction id="4" type="roof" >
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<construction id="2" type="exterior wall" >
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<archetype id="34" building_type="high-rise apartment" reference_standard="ASHRAE 189.1_2009" climate_zone="ASHRAE_2004:4A">
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View File

@ -1,606 +0,0 @@
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<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
1 104.00166474084794 0.0 0.07423253422638612 31.20049942225438 0 0.39683064590801465 0.328881 0.07999999999999996
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1 111.99930179332144 0.0 0.07423253422638612 33.59979053799643 0 0.39683064590801465 0.328881 0.07999999999999996
1 248.0038069061945 0.0 0.07423253422638612 74.40114207185835 0 0.39683064590801465 0.328881 0.07999999999999996
1 248.00380690619454 0.0 0.07423253422638612 74.40114207185836 0 0.39683064590801465 0.328881 0.07999999999999996
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
1 248.00003900690766 0.0 0.07423253422638612 74.40001170207229 0 0.39683064590801465 0.328881 0.07999999999999996
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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4 82177
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6 74850
7 78908
8 84837
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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
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6 70593
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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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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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7 161527
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
7 73582
8 77211
9 75540
10 77054
11 50700
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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
6 65114
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
5 62610
6 70019
7 70402
8 54683
9 40655
10 28369
11 17791
12 14797
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
4 49181
5 62411
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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
4 39889
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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7 80341
8 78194
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10 63267
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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
4 70830
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8 75388
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10 58531
11 35520
12 30280
s 131 polyg 1 % Monthly surface radiation (W/sqm)
p 131 12 % Azimuth -0.5770469695371958, inclination 1.5707963267948966 degrees
1 44055
2 49672
3 70465
4 81923
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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
2 67427
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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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1 84.00256866138267 0.0 0.07423253422638612 25.2007705984148 0 0.39683064590801465 0.328881 0.07999999999999996
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2 251.98736953735417 0.0 0.07541464874089364 0.0 0 0 0 0
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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
1 155.99819637703007 0.0 0.07423253422638612 46.79945891310902 0 0.39683064590801465 0.328881 0.07999999999999996
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
1 19341
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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10 84736
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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5 153084
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8 139197
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
11 45435
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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
12 14748
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

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
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
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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
2 310.64158046245456 0.0 0.07541464874089364 0.0 0 0 0 0
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
1 62.62151423634217 0.0 0.07423253422638612 18.786454270902652 0 0.39683064590801465 0.328881 0.07999999999999996
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
1 158.73828573739848 0.0 0.07423253422638612 47.62148572121954 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
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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
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7 163273
8 142809
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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
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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
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7 164319
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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
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5 78798
6 79127
7 83318
8 76167
9 72773
10 64221
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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
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5 85262
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10 58191
11 37323
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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
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6 64171
7 64611
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s 110 polyg 1 % Monthly surface radiation (W/sqm)
p 110 12 % Azimuth 0.9937510589777222, inclination 1.5707963267948966 degrees
1 15718
2 19661
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9 35360
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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
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s 116 polyg 1 % Monthly surface radiation (W/sqm)
p 116 12 % Azimuth 0.9937712657480137, inclination 1.5707963267948966 degrees
1 17139
2 21648
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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
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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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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
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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
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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
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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
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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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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
1 21918
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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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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
7 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
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6 0.0
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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
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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
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4 0.0
5 0.0
6 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
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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
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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 123 polyg 1 % Monthly surface radiation (W/sqm)
p 123 12 % Azimuth 1.1029109562289032, inclination 1.5707963267948966 degrees
1 13570
2 16790
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9 27037
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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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10 25498
11 15628
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1 12177
2 15183
3 22885
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6 47681
7 46796
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2 52533
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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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% 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 @@
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<CitySim name="Project 1">
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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
View File

@ -1,42 +1,65 @@
import sys
import ast
from insel.insel import Insel
from pathlib import Path
from init import Init
from simplified_radiosity_algorithm.simplified_radiosity_algorithm import SimplifiedRadiosityAlgorithm as Sra
from weather.weather import Weather as Wt
from populate import Populate
from simplified_radiosity_algorithm import SimplifiedRadiosityAlgorithm
from imports.weather_factory import WeatherFactory
from insel.templates.thermal_demand_dynamic_simulation import ThermalDemandDynamicSimulation as Templates
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_cli = 'inseldb_New_York_City.cli'
name_weather = 'inseldb_New_York_City.dat'
example_path = (Path(__file__).parent / 'examples/NYC_2buildings').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()
name_gml = 'one_building_in_kelowna.gml'
example_path = Path(__file__).parent
full_path_gml = (example_path / 'tests' / 'tests_data' / name_gml).resolve()
outputs_path = (example_path / 'tests' / 'tests_outputs').resolve()
keep_files = True
# Initialize the city model and add thermal- and usage-related parameters
# todo: add several steps:
# - simplification of the data model (for all work-flows)
# - internal zoning of buildings (for dynamic simulation only)
city = Init(full_path_gml).city
city = GeometryFactory('citygml', full_path_gml).city
# Climate-related parameters
# todo: define full_path_cli and any other weather related parameter according to the city_name in city
hourly_temperatures = Wt(full_path_weather).weather_temperatures
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.
populated_city = Populate(city).populated_city
print(len(city.buildings))
quit()
sra_calculated = True
if sra_calculated:
weather_format = 'epw'
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.set_irradiance_surfaces(populated_city)
else:
sra.call_sra(keep_files=keep_files)
sra.set_irradiance_surfaces(city)
total_number_of_buildings = len(city.buildings)
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)
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>
<bldg:boundedBy>
<bldg:WallSurface gml:id="UUID_c0bd57d9-a02c-40d5-b467-3fd57478e93b">
<bldg:lod2MultiSurface>
<gml:MultiSurface srsName="EPSG:26911" srsDimension="3">
<gml:surfaceMember>
<gml:Polygon gml:id="UUID_0f22b07c-8bd5-43d1-8904-c96a5a0456ce">
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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'])