Describe _calculate_envelope_emission
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@ -142,6 +142,18 @@ class LCACarbonWorkflow:
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building_opening_workload, building_component_workload
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def _calculate_envelope_emission(self, boundary):
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"""
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The method calculates embodied and end of life emission of the building's
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envelope by iterating through each building boundary's layers. The
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argument corresponding to the boundary parameter comes from the
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calculate_building_component_emission() method. The output also is used
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in the calculate_building_component_emission() method. So the current
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method is hidden to the user.
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:param boundary: <class
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'hub.city_model_structure.
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building_demand.thermal_boundary.ThermalBoundary'>
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:return: <class 'tuple'>
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"""
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layer_emission = []
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layer_end_of_life_emission = []
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for layer in boundary.layers:
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@ -170,14 +182,16 @@ class LCACarbonWorkflow:
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building, surface, boundary, opaque_surface_code,
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density=2579):
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"""
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This calculates the opening emission based on the mentioned parameters.
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This calculates the opening emission by iterating through each thermal
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opening of each building's boundary. It is done based on the mentioned
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parameters.
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The arguments come from the calculate_building_component_emission()
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method and the output is used in the same method. So the current method
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is hidden to the user.
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Windows have the assumed density of 2579 kg/m3
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Window's thickness assumed the same as wall's thickness
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These two values are being used to calculate window's workload
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for End of Life emission evaluation.
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These two values are being used to calculate window's workload for
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the End of Life emission evaluation.
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:param building: <class 'hub.city_model_structure.building.Building'>
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:param surface: <class
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'hub.city_model_structure.building_demand.surface.Surface'>
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