pypsa-eur/rules/solve_myopic.smk
Fabian Neumann 013b705ee4
Clustering: build renewable profiles and add all assets after clustering (#1201)
* Cluster first: build renewable profiles and add all assets after clustering

* [pre-commit.ci] auto fixes from pre-commit.com hooks

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* correction: pass landfall_lengths through functions

* assign landfall_lenghts correctly

* remove parameter add_land_use_constraint

* fix network_dict

* calculate distance to shoreline, remove underwater_fraction

* adjust simplification parameter to exclude Crete from offshore wind connections

* [pre-commit.ci] auto fixes from pre-commit.com hooks

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* remove unused geth2015 hydro capacities

* removing remaining traces of {simpl} wildcard

* add release notes and update workflow graphics

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---------

Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com>
Co-authored-by: lisazeyen <lisa.zeyen@web.de>
2024-09-13 15:37:01 +02:00

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# SPDX-FileCopyrightText: : 2023-4 The PyPSA-Eur Authors
#
# SPDX-License-Identifier: MIT
rule add_existing_baseyear:
params:
baseyear=config_provider("scenario", "planning_horizons", 0),
sector=config_provider("sector"),
existing_capacities=config_provider("existing_capacities"),
costs=config_provider("costs"),
heat_pump_sources=config_provider("sector", "heat_pump_sources"),
energy_totals_year=config_provider("energy", "energy_totals_year"),
input:
network=RESULTS
+ "prenetworks/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
powerplants=resources("powerplants_s_{clusters}.csv"),
busmap_s=resources("busmap_base_s.csv"),
busmap=resources("busmap_base_s_{clusters}.csv"),
clustered_pop_layout=resources("pop_layout_base_s_{clusters}.csv"),
costs=lambda w: resources(
"costs_{}.csv".format(
config_provider("scenario", "planning_horizons", 0)(w)
)
),
cop_profiles=resources("cop_profiles_base_s_{clusters}.nc"),
existing_heating_distribution=resources(
"existing_heating_distribution_base_s_{clusters}_{planning_horizons}.csv"
),
heating_efficiencies=resources("heating_efficiencies.csv"),
output:
RESULTS
+ "prenetworks-brownfield/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
wildcard_constraints:
# TODO: The first planning_horizon needs to be aligned across scenarios
# snakemake does not support passing functions to wildcard_constraints
# reference: https://github.com/snakemake/snakemake/issues/2703
planning_horizons=config["scenario"]["planning_horizons"][0], #only applies to baseyear
threads: 1
resources:
mem_mb=2000,
log:
RESULTS
+ "logs/add_existing_baseyear_base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.log",
benchmark:
(
RESULTS
+ "benchmarks/add_existing_baseyear/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}"
)
conda:
"../envs/environment.yaml"
script:
"../scripts/add_existing_baseyear.py"
def input_profile_tech_brownfield(w):
return {
f"profile_{tech}": resources("profile_{clusters}_" + tech + ".nc")
for tech in config_provider("electricity", "renewable_carriers")(w)
if tech != "hydro"
}
rule add_brownfield:
params:
H2_retrofit=config_provider("sector", "H2_retrofit"),
H2_retrofit_capacity_per_CH4=config_provider(
"sector", "H2_retrofit_capacity_per_CH4"
),
threshold_capacity=config_provider("existing_capacities", "threshold_capacity"),
snapshots=config_provider("snapshots"),
drop_leap_day=config_provider("enable", "drop_leap_day"),
carriers=config_provider("electricity", "renewable_carriers"),
heat_pump_sources=config_provider("sector", "heat_pump_sources"),
input:
unpack(input_profile_tech_brownfield),
simplify_busmap=resources("busmap_base_s.csv"),
cluster_busmap=resources("busmap_base_s_{clusters}.csv"),
network=RESULTS
+ "prenetworks/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
network_p=solved_previous_horizon, #solved network at previous time step
costs=resources("costs_{planning_horizons}.csv"),
cop_profiles=resources("cop_profiles_base_s_{clusters}.nc"),
output:
RESULTS
+ "prenetworks-brownfield/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
threads: 4
resources:
mem_mb=10000,
log:
RESULTS
+ "logs/add_brownfield_base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.log",
benchmark:
(
RESULTS
+ "benchmarks/add_brownfield/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}"
)
conda:
"../envs/environment.yaml"
script:
"../scripts/add_brownfield.py"
ruleorder: add_existing_baseyear > add_brownfield
rule solve_sector_network_myopic:
params:
solving=config_provider("solving"),
foresight=config_provider("foresight"),
planning_horizons=config_provider("scenario", "planning_horizons"),
co2_sequestration_potential=config_provider(
"sector", "co2_sequestration_potential", default=200
),
custom_extra_functionality=input_custom_extra_functionality,
input:
network=RESULTS
+ "prenetworks-brownfield/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
costs=resources("costs_{planning_horizons}.csv"),
output:
network=RESULTS
+ "postnetworks/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.nc",
config=RESULTS
+ "configs/config.base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}.yaml",
shadow:
"shallow"
log:
solver=RESULTS
+ "logs/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}_solver.log",
memory=RESULTS
+ "logs/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}_memory.log",
python=RESULTS
+ "logs/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}_python.log",
threads: solver_threads
resources:
mem_mb=config_provider("solving", "mem_mb"),
runtime=config_provider("solving", "runtime", default="6h"),
benchmark:
(
RESULTS
+ "benchmarks/solve_sector_network/base_s_{clusters}_l{ll}_{opts}_{sector_opts}_{planning_horizons}"
)
conda:
"../envs/environment.yaml"
script:
"../scripts/solve_network.py"