Add building workload
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@ -56,12 +56,15 @@ class LCACarbonWorkflow:
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self.building_envelope_emission = []
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self.building_opening_emission = []
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self.building_component_emission = []
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self.building_demolition_work_load = []
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self.building_envelope_workload = []
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self.building_opening_workload = []
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self.building_component_workload = []
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def calculate_building_component_emission(self, building):
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surface_envelope_emission = []
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surface_opening_emission = []
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boundary_volume = []
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surface_envelope_workload = []
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surface_opening_workload = []
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opaque_surface_code = self.nrcan_catalogs.find_opaque_surface(
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self.nrcan_catalogs.hub_to_nrcan_function(building.function),
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self.nrcan_catalogs.year_to_period_of_construction(
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@ -71,31 +74,40 @@ class LCACarbonWorkflow:
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for surface in building.surfaces:
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boundary_envelope_emission = []
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boundary_opening_emission = []
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boundary_envelope_workload =[]
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boundary_opening_workload = []
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for boundary in surface.associated_thermal_boundaries:
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opening_emission = None
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opening_workload = None
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layer_emission, boundary_work_load = \
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self._calculate_envelope_emission(boundary)
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boundary_envelope_emission += layer_emission
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boundary_volume.append(boundary.opaque_area * boundary.thickness)
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boundary_envelope_workload += boundary_work_load
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if boundary.window_ratio:
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opening_emission, opening_workload = \
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self._calculate_opening_emission(
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building, surface, boundary, opaque_surface_code)
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boundary_work_load += opening_workload
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if opening_emission:
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boundary_opening_emission += opening_emission
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boundary_opening_workload += opening_workload
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if boundary_opening_emission:
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surface_opening_emission += boundary_opening_emission
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surface_opening_workload += boundary_opening_workload
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surface_envelope_emission += boundary_envelope_emission
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building_envelope_volume = sum(boundary_volume)
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surface_envelope_workload += boundary_envelope_workload
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building_envelope_emission = sum(surface_envelope_emission)
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building_envelope_workload = sum(surface_envelope_workload)
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building_opening_emission = sum(surface_opening_emission)
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building_opening_workload = sum(surface_opening_workload)
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building_component_emission = \
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building_envelope_emission + building_opening_emission
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building_component_workload = \
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building_envelope_workload + building_opening_workload
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return building_envelope_emission, building_opening_emission, \
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building_component_emission, building_envelope_volume
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building_component_emission, building_envelope_workload, \
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building_opening_workload, building_component_workload
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def _calculate_envelope_emission(self, boundary):
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layer_emission = []
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@ -109,7 +121,7 @@ class LCACarbonWorkflow:
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boundary.opaque_area, layer.thickness).calculate_envelope_emission())
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boundary_workload.append(
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boundary.opaque_area * layer.thickness * layer_material['density'])
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return layer_emission, sum(boundary_workload)
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return layer_emission, boundary_workload
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def _calculate_opening_emission(
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self,
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@ -131,13 +143,16 @@ class LCACarbonWorkflow:
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transparent_surface_type, opaque_surface_code)['embodied_carbon'],
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opening.area).calculate_opening_emission())
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window_workload.append(opening.area * boundary.thickness * density)
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return opening_emission, sum(window_workload)
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return opening_emission, window_workload
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def calculate_emission(self):
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for building in self.city.buildings:
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envelope, opening, building_component, building_envelope_volume = \
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envelope_emission, opening_emission, component_emission, \
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envelope_workload, opening_workload, component_workload = \
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self.calculate_building_component_emission(building)
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self.building_envelope_emission.append(envelope)
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self.building_opening_emission.append(opening)
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self.building_component_emission.append(building_component)
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self.building_demolition_work_load.append(building_envelope_volume)
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self.building_envelope_emission.append(envelope_emission)
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self.building_opening_emission.append(opening_emission)
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self.building_component_emission.append(component_emission)
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self.building_envelope_workload.append(envelope_workload)
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self.building_opening_workload.append(opening_workload)
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self.building_component_workload.append(component_workload)
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