add min part load for FT and methanolisation via p_min_pu
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@ -261,6 +261,8 @@ sector:
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- nearshore # within 50 km of sea
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- nearshore # within 50 km of sea
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# - offshore
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# - offshore
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ammonia: false # can be false (no NH3 carrier), true (copperplated NH3), "regional" (regionalised NH3 without network)
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ammonia: false # can be false (no NH3 carrier), true (copperplated NH3), "regional" (regionalised NH3 without network)
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min_part_load_fischer_tropsch: 0.9 # p_min_pu
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min_part_load_methanolisation: 0.5 # p_min_pu
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use_fischer_tropsch_waste_heat: true
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use_fischer_tropsch_waste_heat: true
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use_fuel_cell_waste_heat: true
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use_fuel_cell_waste_heat: true
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electricity_distribution_grid: true
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electricity_distribution_grid: true
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@ -65,6 +65,8 @@ incorporates retrofitting options to hydrogen.
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* Add option for BtL (Biomass to liquid fuel/oil) with and without CC
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* Add option for BtL (Biomass to liquid fuel/oil) with and without CC
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* Add option for minimum part load for Fischer-Tropsch plants (default: 90%) and methanolisation plants (default: 50%).
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* Units are assigned to the buses. These only provide a better understanding. The specifications of the units are not taken into account in the optimisation, which means that no automatic conversion of units takes place.
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* Units are assigned to the buses. These only provide a better understanding. The specifications of the units are not taken into account in the optimisation, which means that no automatic conversion of units takes place.
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* Option ``retrieve_sector_databundle`` to automatically retrieve and extract data bundle.
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* Option ``retrieve_sector_databundle`` to automatically retrieve and extract data bundle.
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@ -2227,6 +2227,7 @@ def add_industry(n, costs):
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bus3=spatial.co2.nodes,
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bus3=spatial.co2.nodes,
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carrier="methanolisation",
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carrier="methanolisation",
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p_nom_extendable=True,
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p_nom_extendable=True,
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p_min_pu=options.get("min_part_load_methanolisation", 0),
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capital_cost=costs.at["methanolisation", 'fixed'] * options["MWh_MeOH_per_MWh_H2"], # EUR/MW_H2/a
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capital_cost=costs.at["methanolisation", 'fixed'] * options["MWh_MeOH_per_MWh_H2"], # EUR/MW_H2/a
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lifetime=costs.at["methanolisation", 'lifetime'],
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lifetime=costs.at["methanolisation", 'lifetime'],
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efficiency=options["MWh_MeOH_per_MWh_H2"],
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efficiency=options["MWh_MeOH_per_MWh_H2"],
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@ -2334,6 +2335,7 @@ def add_industry(n, costs):
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capital_cost=costs.at["Fischer-Tropsch", 'fixed'] * costs.at["Fischer-Tropsch", 'efficiency'], # EUR/MW_H2/a
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capital_cost=costs.at["Fischer-Tropsch", 'fixed'] * costs.at["Fischer-Tropsch", 'efficiency'], # EUR/MW_H2/a
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efficiency2=-costs.at["oil", 'CO2 intensity'] * costs.at["Fischer-Tropsch", 'efficiency'],
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efficiency2=-costs.at["oil", 'CO2 intensity'] * costs.at["Fischer-Tropsch", 'efficiency'],
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p_nom_extendable=True,
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p_nom_extendable=True,
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p_min_pu=options.get("min_part_load_fischer_tropsch", 0),
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lifetime=costs.at['Fischer-Tropsch', 'lifetime']
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lifetime=costs.at['Fischer-Tropsch', 'lifetime']
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)
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)
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