Merge remote-tracking branch 'origin/main'
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8f533114c6
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"""
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EnergySystemsSizing enriches the city buildings energy systems
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with the parameters related to the systems dimensioning
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SPDX - License - Identifier: LGPL - 3.0 - or -later
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Copyright © 2023 Concordia CERC group
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Project Coder Pilar Monsalvete Alvarez de Uribarri pilar.monsalvete@concordia.ca
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"""
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import copy
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import hub.helpers.constants as cte
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from hub.city_model_structure.energy_systems.energy_system import EnergySystem
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from hub.city_model_structure.energy_systems.generation_system import GenerationSystem
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from hub.city_model_structure.energy_systems.distribution_system import DistributionSystem
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from hub.city_model_structure.energy_systems.emission_system import EmissionSystem
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class EnergySystemsSizing:
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"""
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EnergySystemsSizing class
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"""
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def __init__(self, city):
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self._city = city
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def enrich(self):
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energy_systems_connection = self._city.energy_systems_connection_table
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for building in self._city.buildings:
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_building_energy_systems = []
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energy_systems = energy_systems_connection['Energy System Type'] \
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.where(energy_systems_connection['Building'] == building.name)
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for energy_system in energy_systems:
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_generic_building_energy_systems = self._city.generic_energy_systems[energy_system]
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for _generic_building_energy_system in _generic_building_energy_systems:
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_building_energy_equipment = EnergySystem()
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_building_energy_equipment.demand_types = _generic_building_energy_system.demand_types
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_building_distribution_system = DistributionSystem()
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_building_distribution_system.generic_distribution_system = \
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copy.deepcopy(_generic_building_energy_system.distribution_system)
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_building_emission_system = EmissionSystem()
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_building_emission_system.generic_emission_system = \
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copy.deepcopy(_generic_building_energy_system.emission_system)
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_building_generation_system = GenerationSystem()
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_building_generation_system.generic_generation_system = \
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copy.deepcopy(_generic_building_energy_system.generation_system)
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if cte.HEATING in _building_energy_equipment.demand_types:
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_building_generation_system.heat_power = building.heating_peak_load[cte.YEAR][cte.HEATING_PEAK_LOAD][0]
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if cte.COOLING in _building_energy_equipment.demand_types:
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_building_generation_system.cooling_power = building.cooling_peak_load[cte.YEAR][cte.COOLING_PEAK_LOAD][0]
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_building_energy_equipment.generation_system = _building_generation_system
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_building_energy_equipment.distribution_system = _building_distribution_system
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_building_energy_equipment.emission_system = _building_emission_system
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_building_energy_systems.append(_building_energy_equipment)
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building.energy_systems = _building_energy_systems
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11
main.py
11
main.py
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@ -6,10 +6,10 @@ from hub.imports.usage_factory import UsageFactory
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from hub.imports.weather_factory import WeatherFactory
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from hub.helpers.dictionaries import Dictionaries
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from hub.imports.energy_systems_factory import EnergySystemsFactory
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import hub.helpers.constants as cte
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from results import Results
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from monthly_energy_balance_engine import MonthlyEnergyBalanceEngine
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from sra_engine import SraEngine
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from energy_systems_sizing import EnergySystemsSizing
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try:
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MonthlyEnergyBalanceEngine(city, tmp_folder)
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print(' insel processed...')
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EnergySystemsSizing(city).enrich()
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print(' energy systems dimensioning processed...')
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for building in city.buildings:
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for energy_system in building.energy_systems:
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if cte.HEATING in energy_system.demand_types:
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energy_system.generation_system.heat_power = building.heating_peak_load[cte.YEAR][cte.HEATING_PEAK_LOAD][0]
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if cte.COOLING in energy_system.demand_types:
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energy_system.generation_system.cooling_power = building.cooling_peak_load[cte.YEAR][cte.COOLING_PEAK_LOAD][0]
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print('importing results:')
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results = Results(city, out_path)
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results.print()
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print('results printed...')
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