Small changes to incorporate distribution and check mistakes
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@ -16,7 +16,7 @@ import hub.helpers.constants as cte
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class LifeCycleCosts:
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def __init__(self, building, archetype, number_of_years, consumer_price_index, electricity_peak_index,
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electricity_price_index, gas_price_index, discount_rate,
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retrofitting_scenario):
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retrofitting_scenario,fuel_type):
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self._building = building
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self._number_of_years = number_of_years
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self._consumer_price_index = consumer_price_index
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@ -32,6 +32,7 @@ class LifeCycleCosts:
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self._concepts = 0
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self._retrofitting_scenario = retrofitting_scenario
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self._total_floor_area = 0
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self._fuel_type = fuel_type
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for internal_zone in building.internal_zones:
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for thermal_zone in internal_zone.thermal_zones:
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self._total_floor_area += thermal_zone.total_floor_area
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@ -178,24 +179,33 @@ class LifeCycleCosts:
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building = self._building
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archetype = self._archetype
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total_floor_area = self._total_floor_area
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factor_residential = total_floor_area / 80
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#todo: split the heating between fuels
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electricity_heating = building.heating_consumption[cte.YEAR][0] / (1000)
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fixed_gas_cost_year_0 = 0
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variable_gas_cost_year_0 = 0
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electricity_heating = 0
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domestic_hot_water_electricity = 0
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if self._fuel_type == 1:
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fixed_gas_cost_year_0 = archetype.operational_cost.fuels[1].fixed_monthly
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variable_gas_cost_year_0 = (building.heating_consumption[cte.YEAR][0]+
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building.domestic_hot_water_consumption[cte.YEAR][0]) / (1000) * \
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archetype.operational_cost.fuels[1].variable[0]
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if self._fuel_type == 0:
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electricity_heating = building.heating_consumption[cte.YEAR][0] / (1000)
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domestic_hot_water_electricity = building.domestic_hot_water_consumption[cte.YEAR][0] / 1000
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electricity_cooling = building.cooling_consumption[cte.YEAR][0] / (1000)
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electricity_lighting = building.lighting_electrical_demand[cte.YEAR]['insel meb']/1000
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domestic_hot_water_demand = building.domestic_hot_water_consumption[cte.YEAR][0]/1000
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electricity_plug_loads = building.appliances_electrical_demand[cte.YEAR]['insel meb']/1000
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electricity_distribution = building.distribution_systems_electrical_consumption [cte.YEAR][0]/1000
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electricity_distribution = 0 #building.distribution_systems_electrical_consumption[cte.YEAR][0]/1000
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total_electricity_consumption = electricity_heating + electricity_cooling + electricity_lighting + \
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domestic_hot_water_demand + electricity_plug_loads + electricity_distribution
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domestic_hot_water_electricity + electricity_plug_loads + electricity_distribution
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#todo: change when peak electricity demand is coded. Careful with factor residential
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peak_electricity_demand = 100 #self._peak_electricity_demand
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factor_residential= total_floor_area/80
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variable_electricity_cost_year_0 = total_electricity_consumption * archetype.operational_cost.fuels[0].variable[0]
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peak_electricity_cost_year_0 = peak_electricity_demand * archetype.operational_cost.fuels[0].fixed_power * 12
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monthly_electricity_cost_year_0 = archetype.operational_cost.fuels[0].fixed_monthly * 12 * factor_residential
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fixed_gas_cost_year_0 = archetype.operational_cost.fuels[1].fixed_monthly*12* factor_residential
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variable_gas_cost_year_0 = total_electricity_consumption * archetype.operational_cost.fuels[1].variable[0]
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price_increase_electricity = 0
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price_increase_peak_electricity = 0
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price_increase_gas = 0
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@ -213,7 +223,7 @@ class LifeCycleCosts:
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price_increase_electricity
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self._yearly_operational_costs.at[year,'Fixed_costs_gas'] = fixed_gas_cost_year_0 * \
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price_increase_gas
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self._yearly_operational_costs.at[year,'Variable_costs_gas'] = variable_gas_cost_year_0* \
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self._yearly_operational_costs.at[year,'Variable_costs_gas'] = variable_gas_cost_year_0* \
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price_increase_peak_electricity
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self._yearly_operational_costs.at[year,'Variable_costs_gas'] = variable_gas_cost_year_0 * \
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price_increase_peak_electricity
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10
main.py
10
main.py
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@ -126,8 +126,15 @@ for retrofitting_scenario in retrofitting_scenarios:
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# f'{building.function}\n')
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#continue
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print('lcc for first building started')
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if "gas" in building.energy_systems_archetype_name:
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#0 to electricity, 1 to gas
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fuel_type = 1
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else:
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fuel_type = 0
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print(f'fuel type {fuel_type}')
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lcc = LifeCycleCosts(building, archetype, number_of_years, consumer_price_index, electricity_peak_index,
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electricity_price_index, gas_price_index, discount_rate, retrofitting_scenario)
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electricity_price_index, gas_price_index, discount_rate, retrofitting_scenario,fuel_type)
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global_capital_costs = lcc.calculate_capital_costs()
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global_end_of_life_costs = lcc.calculate_end_of_life_costs()
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global_operational_costs = lcc.calculate_total_operational_costs()
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@ -179,6 +186,7 @@ for retrofitting_scenario in retrofitting_scenarios:
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f'operational_incomes']
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print(life_cycle_results)
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print(f'Scenario {retrofitting_scenario} {life_cycle_costs}')
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#todo: change if there is more than 1 building
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life_cycle_results.to_excel(Path(__file__).parent/'out_files'/f'Results.xlsx', index=True)
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