correct retrofit results to apply costs and co2 to all scenariosa
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@ -38,65 +38,64 @@ class RetrofitResults(Resource, Config):
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return Response(json.dumps({'result': 'succeed', 'results': results}), status=200, headers=token)
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# deserialize the response to return pure json
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scenario = next(iter(results))
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for building_results in results[scenario]:
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values = []
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building_info = self.database.building(building_results['building'], user_id, application_id, scenario)
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results_dictionary = {}
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archetype = self.energy_systems_catalog.get_entry(building_info.system_name)
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for value in building_results['insel meb']:
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key = next(iter(value))
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values.append({key: json.loads(str(value[key]))})
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results_dictionary[key] = json.loads(str(value[key]))
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building_results['insel meb'] = values
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mockup_building = Building(building_info, results_dictionary, archetype)
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life_cycle = Cost(mockup_building, retrofit_scenario=scenario).life_cycle
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for scenario in results:
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for building_results in results[scenario]:
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values = []
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building_info = self.database.building(building_results['building'], user_id, application_id, scenario)
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results_dictionary = {}
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archetype = self.energy_systems_catalog.get_entry(building_info.system_name)
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for value in building_results['insel meb']:
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key = next(iter(value))
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values.append({key: json.loads(str(value[key]))})
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results_dictionary[key] = json.loads(str(value[key]))
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building_results['insel meb'] = values
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mockup_building = Building(building_info, results_dictionary, archetype)
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life_cycle = Cost(mockup_building, retrofit_scenario=scenario).life_cycle
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operational_co2 = Co2Emission(mockup_building).operational_co2
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global_capital_costs = life_cycle[f'Scenario {scenario}']['global_capital_costs']
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global_operational_costs = life_cycle[f'Scenario {scenario}']['global_operational_costs']
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global_capital_incomes = life_cycle[f'Scenario {scenario}']['global_capital_incomes']
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global_maintenance_costs = life_cycle[f'Scenario {scenario}']['global_maintenance_costs']
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building_results['costs'] = {
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'total_capital_costs_skin': life_cycle[f'Scenario {scenario}']['total_capital_costs_skin'],
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'total_capital_costs_systems': life_cycle[f'Scenario {scenario}']['total_capital_costs_systems'],
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'end_of_life_costs': life_cycle[f'Scenario {scenario}']['end_of_life_costs'],
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'total_operational_costs': life_cycle[f'Scenario {scenario}']['total_operational_costs'],
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'total_maintenance_costs': life_cycle[f'Scenario {scenario}']['total_maintenance_costs'],
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'operational_incomes': life_cycle[f'Scenario {scenario}']['operational_incomes'],
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'capital_incomes': life_cycle[f'Scenario {scenario}']['capital_incomes'],
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'global_capital_costs': {
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'B2010_opaque_walls': global_capital_costs['B2010_opaque_walls'].tolist(),
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'B2020_transparent': global_capital_costs['B2020_transparent'].tolist(),
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'B3010_opaque_roof': global_capital_costs['B3010_opaque_roof'].tolist(),
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'B10_superstructure': global_capital_costs['B10_superstructure'].tolist(),
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'D3020_heat_generating_systems': global_capital_costs['D3020_heat_generating_systems'].tolist(),
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'D3030_cooling_generation_systems': global_capital_costs['D3030_cooling_generation_systems'].tolist(),
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'D3080_other_hvac_ahu': global_capital_costs['D3080_other_hvac_ahu'].tolist(),
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'D5020_lighting_and_branch_wiring': global_capital_costs['D5020_lighting_and_branch_wiring'].tolist(),
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'D301010_photovoltaic_system': global_capital_costs['D301010_photovoltaic_system'].tolist(),
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},
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'global_end_of_life_costs': life_cycle[f'Scenario {scenario}']['global_end_of_life_costs']['End_of_life_costs'].tolist(),
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'global_operational_costs': {
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'fixed_costs_electricity_peak': global_operational_costs['Fixed_costs_electricity_peak'].tolist(),
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'fixed_costs_electricity_monthly': global_operational_costs['Fixed_costs_electricity_monthly'].tolist(),
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'variable_costs_electricity': global_operational_costs['Variable_costs_electricity'].tolist(),
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'fixed_costs_gas': global_operational_costs['Fixed_costs_gas'].tolist(),
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'variable_costs_gas': global_operational_costs['Variable_costs_gas'].tolist()
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},
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'global_maintenance_costs': {
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'heating_maintenance': global_maintenance_costs['Heating_maintenance'].tolist(),
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'cooling_maintenance': global_maintenance_costs['Cooling_maintenance'].tolist(),
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'pv_maintenance': global_maintenance_costs['PV_maintenance'].tolist(),
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},
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'global_operational_incomes': life_cycle[f'Scenario {scenario}']['global_operational_incomes']['Incomes electricity'].tolist(),
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'global_capital_incomes': {
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'subsidies_construction': global_capital_incomes['Subsidies construction'].tolist(),
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'subsidies_hvac': global_capital_incomes['Subsidies HVAC'].tolist(),
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'subsidies_pv': global_capital_incomes['Subsidies PV'].tolist()
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operational_co2 = Co2Emission(mockup_building).operational_co2
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global_capital_costs = life_cycle[f'Scenario {scenario}']['global_capital_costs']
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global_operational_costs = life_cycle[f'Scenario {scenario}']['global_operational_costs']
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global_capital_incomes = life_cycle[f'Scenario {scenario}']['global_capital_incomes']
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global_maintenance_costs = life_cycle[f'Scenario {scenario}']['global_maintenance_costs']
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building_results['costs'] = {
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'total_capital_costs_skin': life_cycle[f'Scenario {scenario}']['total_capital_costs_skin'],
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'total_capital_costs_systems': life_cycle[f'Scenario {scenario}']['total_capital_costs_systems'],
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'end_of_life_costs': life_cycle[f'Scenario {scenario}']['end_of_life_costs'],
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'total_operational_costs': life_cycle[f'Scenario {scenario}']['total_operational_costs'],
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'total_maintenance_costs': life_cycle[f'Scenario {scenario}']['total_maintenance_costs'],
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'operational_incomes': life_cycle[f'Scenario {scenario}']['operational_incomes'],
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'capital_incomes': life_cycle[f'Scenario {scenario}']['capital_incomes'],
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'global_capital_costs': {
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'B2010_opaque_walls': global_capital_costs['B2010_opaque_walls'].tolist(),
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'B2020_transparent': global_capital_costs['B2020_transparent'].tolist(),
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'B3010_opaque_roof': global_capital_costs['B3010_opaque_roof'].tolist(),
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'B10_superstructure': global_capital_costs['B10_superstructure'].tolist(),
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'D3020_heat_generating_systems': global_capital_costs['D3020_heat_generating_systems'].tolist(),
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'D3030_cooling_generation_systems': global_capital_costs['D3030_cooling_generation_systems'].tolist(),
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'D3080_other_hvac_ahu': global_capital_costs['D3080_other_hvac_ahu'].tolist(),
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'D5020_lighting_and_branch_wiring': global_capital_costs['D5020_lighting_and_branch_wiring'].tolist(),
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'D301010_photovoltaic_system': global_capital_costs['D301010_photovoltaic_system'].tolist(),
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},
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'global_end_of_life_costs': life_cycle[f'Scenario {scenario}']['global_end_of_life_costs']['End_of_life_costs'].tolist(),
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'global_operational_costs': {
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'fixed_costs_electricity_peak': global_operational_costs['Fixed_costs_electricity_peak'].tolist(),
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'fixed_costs_electricity_monthly': global_operational_costs['Fixed_costs_electricity_monthly'].tolist(),
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'variable_costs_electricity': global_operational_costs['Variable_costs_electricity'].tolist(),
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'fixed_costs_gas': global_operational_costs['Fixed_costs_gas'].tolist(),
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'variable_costs_gas': global_operational_costs['Variable_costs_gas'].tolist()
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},
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'global_maintenance_costs': {
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'heating_maintenance': global_maintenance_costs['Heating_maintenance'].tolist(),
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'cooling_maintenance': global_maintenance_costs['Cooling_maintenance'].tolist(),
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'pv_maintenance': global_maintenance_costs['PV_maintenance'].tolist(),
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},
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'global_operational_incomes': life_cycle[f'Scenario {scenario}']['global_operational_incomes']['Incomes electricity'].tolist(),
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'global_capital_incomes': {
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'subsidies_construction': global_capital_incomes['Subsidies construction'].tolist(),
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'subsidies_hvac': global_capital_incomes['Subsidies HVAC'].tolist(),
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'subsidies_pv': global_capital_incomes['Subsidies PV'].tolist()
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}
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}
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}
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print(operational_co2)
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building_results['operational_co2'] = operational_co2
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building_results['operational_co2'] = operational_co2
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return Response(json.dumps({'result': 'succeed', 'results': results}), status=200, headers=token)
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