monthly_energy_balance_work.../main.py

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from pathlib import Path
from hub.imports.geometry_factory import GeometryFactory
from hub.imports.construction_factory import ConstructionFactory
from hub.imports.usage_factory import UsageFactory
from hub.imports.weather_factory import WeatherFactory
from hub.helpers.dictionaries import Dictionaries
from hub.imports.energy_systems_factory import EnergySystemsFactory
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import hub.helpers.constants as cte
from results import Results
from monthly_energy_balance_engine import MonthlyEnergyBalanceEngine
from sra_engine import SraEngine
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try:
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file_path = (Path(__file__).parent / 'input_files' / 'selected_building_warehouse.geojson')
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climate_reference_city = 'Montreal'
weather_format = 'epw'
construction_format = 'nrcan'
usage_format = 'nrcan'
energy_systems_format = 'montreal_custom'
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attic_heated_case = 0
basement_heated_case = 1
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out_path = (Path(__file__).parent / 'output_files')
tmp_folder = (Path(__file__).parent / 'tmp')
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print('[simulation start]')
city = GeometryFactory('geojson',
path=file_path,
height_field='heightmax',
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year_of_construction_field='ANNEE_CONS',
function_field='CODE_UTILI',
function_to_hub=Dictionaries().montreal_function_to_hub_function).city
city.climate_reference_city = climate_reference_city
city.climate_file = (tmp_folder / f'{climate_reference_city}.cli').resolve()
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print(f'city created from {file_path}')
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WeatherFactory(weather_format, city).enrich()
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print('enrich weather... done')
ConstructionFactory(construction_format, city).enrich()
print('enrich constructions... done')
UsageFactory(usage_format, city).enrich()
print('enrich usage... done')
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for building in city.buildings:
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building.energy_systems_archetype_name = 'system 1 gas pv'
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EnergySystemsFactory(energy_systems_format, city).enrich()
print('enrich systems... done')
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print('exporting:')
sra_file = (tmp_folder / f'{city.name}_sra.xml').resolve()
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SraEngine(city, sra_file, tmp_folder)
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print(' sra processed...')
MonthlyEnergyBalanceEngine(city, tmp_folder)
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print(' insel processed...')
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for building in city.buildings:
for energy_system in building.energy_systems:
if cte.HEATING in energy_system.demand_types:
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energy_system.generation_system.heat_power = building.heating_peak_load[cte.YEAR][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][0]
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print('importing results:')
results = Results(city, out_path)
results.print()
print('results printed...')
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print('[simulation end]')
except Exception as ex:
print(ex)
print('error: ', ex)
print('[simulation abort]')