forked from s_ranjbar/city_retrofit
Update energy plus
Shadow object surfaces are now building_name_{index} Now version 23.2 is supported Minimal.idf set the proper simulation method
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@ -276,11 +276,11 @@ class Idf:
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self._idf.newidfobject(self._COMPACT_SCHEDULE, **_kwargs)
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self._idf.newidfobject(self._COMPACT_SCHEDULE, **_kwargs)
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def _write_schedules_file(self, usage, schedule):
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def _write_schedules_file(self, usage, schedule):
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file_name = str((Path(self._output_path) / f'{schedule.type} schedules {usage}.dat').resolve())
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file_name = str((Path(self._output_path) / f'{schedule.type} schedules {usage}.csv').resolve())
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with open(file_name, 'w', encoding='utf8') as file:
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with open(file_name, 'w', encoding='utf8') as file:
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for value in schedule.values:
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for value in schedule.values:
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file.write(f'{str(value)},\n')
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file.write(f'{str(value)},\n')
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return file_name
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return Path(file_name).name
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def _add_file_schedule(self, usage, schedule, file_name):
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def _add_file_schedule(self, usage, schedule, file_name):
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_schedule = self._idf.newidfobject(self._FILE_SCHEDULE, Name=f'{schedule.type} schedules {usage}')
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_schedule = self._idf.newidfobject(self._FILE_SCHEDULE, Name=f'{schedule.type} schedules {usage}')
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@ -403,7 +403,7 @@ class Idf:
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self._idf.newidfobject(self._PEOPLE,
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self._idf.newidfobject(self._PEOPLE,
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Name=f'{zone_name}_occupancy',
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Name=f'{zone_name}_occupancy',
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Zone_or_ZoneList_Name=zone_name,
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Number_of_People_Schedule_Name=f'Occupancy schedules {thermal_zone.usage_name}',
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Number_of_People_Schedule_Name=f'Occupancy schedules {thermal_zone.usage_name}',
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Number_of_People_Calculation_Method="People",
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Number_of_People_Calculation_Method="People",
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Number_of_People=number_of_people,
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Number_of_People=number_of_people,
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@ -420,7 +420,7 @@ class Idf:
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self._idf.newidfobject(self._LIGHTS,
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self._idf.newidfobject(self._LIGHTS,
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Name=f'{zone_name}_lights',
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Name=f'{zone_name}_lights',
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Zone_or_ZoneList_Name=zone_name,
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Schedule_Name=f'Lighting schedules {thermal_zone.usage_name}',
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Schedule_Name=f'Lighting schedules {thermal_zone.usage_name}',
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Design_Level_Calculation_Method=method,
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Design_Level_Calculation_Method=method,
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Watts_per_Zone_Floor_Area=watts_per_zone_floor_area,
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Watts_per_Zone_Floor_Area=watts_per_zone_floor_area,
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@ -439,7 +439,7 @@ class Idf:
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self._idf.newidfobject(self._APPLIANCES,
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self._idf.newidfobject(self._APPLIANCES,
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Fuel_Type=fuel_type,
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Fuel_Type=fuel_type,
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Name=f'{zone_name}_appliance',
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Name=f'{zone_name}_appliance',
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Zone_or_ZoneList_Name=zone_name,
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Schedule_Name=f'Appliance schedules {thermal_zone.usage_name}',
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Schedule_Name=f'Appliance schedules {thermal_zone.usage_name}',
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Design_Level_Calculation_Method=method,
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Design_Level_Calculation_Method=method,
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Power_per_Zone_Floor_Area=watts_per_zone_floor_area,
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Power_per_Zone_Floor_Area=watts_per_zone_floor_area,
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@ -453,7 +453,7 @@ class Idf:
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_infiltration = thermal_zone.infiltration_rate_system_off * cte.HOUR_TO_SECONDS
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_infiltration = thermal_zone.infiltration_rate_system_off * cte.HOUR_TO_SECONDS
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self._idf.newidfobject(self._INFILTRATION,
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self._idf.newidfobject(self._INFILTRATION,
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Name=f'{zone_name}_infiltration',
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Name=f'{zone_name}_infiltration',
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Zone_or_ZoneList_Name=zone_name,
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Schedule_Name=schedule,
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Schedule_Name=schedule,
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Design_Flow_Rate_Calculation_Method='AirChanges/Hour',
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Design_Flow_Rate_Calculation_Method='AirChanges/Hour',
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Air_Changes_per_Hour=_infiltration
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Air_Changes_per_Hour=_infiltration
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@ -464,7 +464,7 @@ class Idf:
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_air_change = thermal_zone.mechanical_air_change * cte.HOUR_TO_SECONDS
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_air_change = thermal_zone.mechanical_air_change * cte.HOUR_TO_SECONDS
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self._idf.newidfobject(self._VENTILATION,
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self._idf.newidfobject(self._VENTILATION,
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Name=f'{zone_name}_ventilation',
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Name=f'{zone_name}_ventilation',
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Zone_or_ZoneList_Name=zone_name,
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Zone_or_ZoneList_or_Space_or_SpaceList_Name=zone_name,
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Schedule_Name=schedule,
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Schedule_Name=schedule,
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Design_Flow_Rate_Calculation_Method='AirChanges/Hour',
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Design_Flow_Rate_Calculation_Method='AirChanges/Hour',
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Air_Changes_per_Hour=_air_change
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Air_Changes_per_Hour=_air_change
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@ -627,8 +627,8 @@ class Idf:
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self._idf.intersect_match()
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self._idf.intersect_match()
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def _add_shading(self, building):
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def _add_shading(self, building):
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for surface in building.surfaces:
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for i, surface in enumerate(building.surfaces):
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shading = self._idf.newidfobject(self._SHADING, Name=f'{surface.name}')
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shading = self._idf.newidfobject(self._SHADING, Name=f'{building.name}_{i}')
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coordinates = self._matrix_to_list(surface.solid_polygon.coordinates,
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coordinates = self._matrix_to_list(surface.solid_polygon.coordinates,
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self._city.lower_corner)
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self._city.lower_corner)
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shading.setcoords(coordinates)
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shading.setcoords(coordinates)
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@ -636,7 +636,7 @@ class Idf:
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if solar_reflectance is None:
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if solar_reflectance is None:
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solar_reflectance = ConfigurationHelper().short_wave_reflectance
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solar_reflectance = ConfigurationHelper().short_wave_reflectance
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self._idf.newidfobject(self._SHADING_PROPERTY,
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self._idf.newidfobject(self._SHADING_PROPERTY,
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Shading_Surface_Name=f'{surface.name}',
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Shading_Surface_Name=f'{building.name}_{i}',
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Diffuse_Solar_Reflectance_of_Unglazed_Part_of_Shading_Surface=solar_reflectance,
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Diffuse_Solar_Reflectance_of_Unglazed_Part_of_Shading_Surface=solar_reflectance,
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Fraction_of_Shading_Surface_That_Is_Glazed=0)
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Fraction_of_Shading_Surface_That_Is_Glazed=0)
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File diff suppressed because it is too large
Load Diff
@ -13,7 +13,7 @@
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! HVAC: None.
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! HVAC: None.
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!
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!
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Version,9.5;
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Version,23.2;
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Timestep,4;
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Timestep,4;
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@ -127,31 +127,25 @@
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No, !- Do HVAC Sizing Simulation for Sizing Periods
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No, !- Do HVAC Sizing Simulation for Sizing Periods
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1; !- Maximum Number of HVAC Sizing Simulation Passes
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1; !- Maximum Number of HVAC Sizing Simulation Passes
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Output:Table:SummaryReports, AnnualBuildingUtilityPerformanceSummary,
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Output:VariableDictionary,Regular;
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DemandEndUseComponentsSummary,
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SensibleHeatGainSummary,
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InputVerificationandResultsSummary,
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AdaptiveComfortSummary,
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Standard62.1Summary,
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ClimaticDataSummary,
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EquipmentSummary,
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EnvelopeSummary,
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LightingSummary,
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HVACSizingSummary,
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SystemSummary,
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ComponentSizingSummary,
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OutdoorAirSummary,
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ObjectCountSummary,
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EndUseEnergyConsumptionOtherFuelsMonthly,
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PeakEnergyEndUseOtherFuelsMonthly;
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Output:Variable,*,Site Outdoor Air Drybulb Temperature,Timestep;
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OutputControl:Table:Style, CommaAndHTML,JtoKWH;
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Output:Variable,*,Site Outdoor Air Wetbulb Temperature,Timestep;
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Output:Meter,DISTRICTHEATING:Facility,hourly;
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Output:Variable,*,Site Outdoor Air Dewpoint Temperature,Timestep;
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Output:Meter,DISTRICTCOOLING:Facility,hourly;
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Output:Meter,InteriorEquipment:Electricity,hourly;
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Output:Variable,*,Site Solar Azimuth Angle,Timestep;
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Output:Meter,InteriorLights:Electricity,hourly;
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Output:Variable,*,Site Solar Altitude Angle,Timestep;
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Output:Variable,*,Site Direct Solar Radiation Rate per Area,Timestep;
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Output:Variable,*,Site Diffuse Solar Radiation Rate per Area,Timestep;
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OutputControl:Table:Style,
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HTML; !- Column Separator
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Output:Table:SummaryReports,
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AllSummary; !- Report 1 Name
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OutputControl:IlluminanceMap:Style,
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Comma; !- Column separator
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@ -213,8 +213,6 @@ class Geojson:
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polygon = Polygon(coordinates)
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polygon = Polygon(coordinates)
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polygon.area = igh.ground_area(coordinates)
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polygon.area = igh.ground_area(coordinates)
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surfaces[-1] = Surface(polygon, polygon)
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surfaces[-1] = Surface(polygon, polygon)
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if len(surfaces) > 1:
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raise ValueError('too many surfaces!!!!')
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building = Building(f'{building_name}', surfaces, year_of_construction, function)
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building = Building(f'{building_name}', surfaces, year_of_construction, function)
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for alias in building_aliases:
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for alias in building_aliases:
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building.add_alias(alias)
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building.add_alias(alias)
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@ -143,7 +143,6 @@ class TestExports(TestCase):
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EnergyBuildingsExportsFactory('idf', city, self._output_path).export()
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EnergyBuildingsExportsFactory('idf', city, self._output_path).export()
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UsageFactory('nrcan', city).enrich()
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UsageFactory('nrcan', city).enrich()
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WeatherFactory('epw', city).enrich()
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WeatherFactory('epw', city).enrich()
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print(self._output_path)
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try:
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try:
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EnergyBuildingsExportsFactory('idf', city, self._output_path).export()
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EnergyBuildingsExportsFactory('idf', city, self._output_path).export()
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except Exception:
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except Exception:
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