| Conditions | 1 |
| Total Lines | 262 |
| Code Lines | 134 |
| Lines | 0 |
| Ratio | 0 % |
| Changes | 0 | ||
Small methods make your code easier to understand, in particular if combined with a good name. Besides, if your method is small, finding a good name is usually much easier.
For example, if you find yourself adding comments to a method's body, this is usually a good sign to extract the commented part to a new method, and use the comment as a starting point when coming up with a good name for this new method.
Commonly applied refactorings include:
If many parameters/temporary variables are present:
| 1 | """ |
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| 130 | def insert(): |
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| 131 | """Insert combined heat and power plants into eTraGo tables. |
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| 132 | |||
| 133 | Gas CHP plants are modeled as links to the gas grid, |
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| 134 | biomass CHP plants (only in eGon2035) are modeled as generators |
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| 135 | |||
| 136 | Returns |
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| 137 | ------- |
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| 138 | None. |
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| 139 | |||
| 140 | """ |
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| 141 | |||
| 142 | sources = config.datasets()["chp_etrago"]["sources"] |
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| 143 | |||
| 144 | targets = config.datasets()["chp_etrago"]["targets"] |
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| 145 | |||
| 146 | db.execute_sql( |
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| 147 | f""" |
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| 148 | DELETE FROM {targets['link']['schema']}.{targets['link']['table']} |
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| 149 | WHERE carrier LIKE '%%CHP%%' |
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| 150 | AND scn_name = 'eGon2035' |
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| 151 | AND bus0 IN |
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| 152 | (SELECT bus_id |
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| 153 | FROM {sources['etrago_buses']['schema']}.{sources['etrago_buses']['table']} |
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| 154 | WHERE scn_name = 'eGon2035' |
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| 155 | AND country = 'DE') |
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| 156 | AND bus1 IN |
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| 157 | (SELECT bus_id |
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| 158 | FROM {sources['etrago_buses']['schema']}.{sources['etrago_buses']['table']} |
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| 159 | WHERE scn_name = 'eGon2035' |
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| 160 | AND country = 'DE') |
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| 161 | """ |
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| 162 | ) |
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| 163 | db.execute_sql( |
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| 164 | f""" |
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| 165 | DELETE FROM {targets['generator']['schema']}.{targets['generator']['table']} |
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| 166 | WHERE carrier LIKE '%%CHP%%' |
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| 167 | AND scn_name = 'eGon2035' |
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| 168 | """ |
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| 169 | ) |
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| 170 | # Select all CHP plants used in district heating |
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| 171 | chp_dh = db.select_dataframe( |
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| 172 | f""" |
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| 173 | SELECT electrical_bus_id, ch4_bus_id, a.carrier, |
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| 174 | SUM(el_capacity) AS el_capacity, SUM(th_capacity) AS th_capacity, |
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| 175 | c.bus_id as heat_bus_id |
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| 176 | FROM {sources['chp_table']['schema']}. |
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| 177 | {sources['chp_table']['table']} a |
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| 178 | JOIN {sources['district_heating_areas']['schema']}. |
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| 179 | {sources['district_heating_areas']['table']} b |
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| 180 | ON a.district_heating_area_id = b.area_id |
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| 181 | JOIN grid.egon_etrago_bus c |
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| 182 | ON ST_Transform(ST_Centroid(b.geom_polygon), 4326) = c.geom |
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| 183 | |||
| 184 | WHERE a.scenario='eGon2035' |
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| 185 | AND b.scenario = 'eGon2035' |
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| 186 | AND c.scn_name = 'eGon2035' |
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| 187 | AND c.carrier = 'central_heat' |
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| 188 | AND NOT district_heating_area_id IS NULL |
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| 189 | GROUP BY ( |
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| 190 | electrical_bus_id, ch4_bus_id, a.carrier, c.bus_id) |
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| 191 | """ |
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| 192 | ) |
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| 193 | # Divide into biomass and gas CHP which are modelled differently |
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| 194 | chp_link_dh = chp_dh[chp_dh.carrier != "biomass"].index |
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| 195 | chp_generator_dh = chp_dh[chp_dh.carrier == "biomass"].index |
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| 196 | |||
| 197 | # Create geodataframes for gas CHP plants |
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| 198 | chp_el = link_geom_from_buses( |
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| 199 | gpd.GeoDataFrame( |
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| 200 | index=chp_link_dh, |
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| 201 | data={ |
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| 202 | "scn_name": "eGon2035", |
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| 203 | "bus0": chp_dh.loc[chp_link_dh, "ch4_bus_id"].astype(int), |
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| 204 | "bus1": chp_dh.loc[chp_link_dh, "electrical_bus_id"].astype( |
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| 205 | int |
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| 206 | ), |
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| 207 | "p_nom": chp_dh.loc[chp_link_dh, "el_capacity"], |
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| 208 | "carrier": "central_gas_CHP", |
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| 209 | }, |
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| 210 | ), |
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| 211 | "eGon2035", |
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| 212 | ) |
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| 213 | # Set index |
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| 214 | chp_el["link_id"] = range( |
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| 215 | db.next_etrago_id("link"), len(chp_el) + db.next_etrago_id("link") |
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| 216 | ) |
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| 217 | |||
| 218 | # Add marginal cost which is only VOM in case of gas chp |
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| 219 | chp_el["marginal_cost"] = get_sector_parameters("gas", "eGon2035")[ |
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| 220 | "marginal_cost" |
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| 221 | ]["chp_gas"] |
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| 222 | |||
| 223 | # Insert into database |
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| 224 | chp_el.to_postgis( |
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| 225 | targets["link"]["table"], |
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| 226 | schema=targets["link"]["schema"], |
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| 227 | con=db.engine(), |
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| 228 | if_exists="append", |
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| 229 | ) |
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| 230 | |||
| 231 | # |
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| 232 | chp_heat = link_geom_from_buses( |
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| 233 | gpd.GeoDataFrame( |
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| 234 | index=chp_link_dh, |
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| 235 | data={ |
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| 236 | "scn_name": "eGon2035", |
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| 237 | "bus0": chp_dh.loc[chp_link_dh, "ch4_bus_id"].astype(int), |
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| 238 | "bus1": chp_dh.loc[chp_link_dh, "heat_bus_id"].astype(int), |
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| 239 | "p_nom": chp_dh.loc[chp_link_dh, "th_capacity"], |
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| 240 | "carrier": "central_gas_CHP_heat", |
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| 241 | }, |
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| 242 | ), |
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| 243 | "eGon2035", |
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| 244 | ) |
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| 245 | |||
| 246 | chp_heat["link_id"] = range( |
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| 247 | db.next_etrago_id("link"), len(chp_heat) + db.next_etrago_id("link") |
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| 248 | ) |
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| 249 | |||
| 250 | chp_heat.to_postgis( |
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| 251 | targets["link"]["table"], |
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| 252 | schema=targets["link"]["schema"], |
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| 253 | con=db.engine(), |
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| 254 | if_exists="append", |
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| 255 | ) |
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| 256 | |||
| 257 | # Insert biomass CHP as generators |
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| 258 | # Create geodataframes for CHP plants |
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| 259 | chp_el_gen = pd.DataFrame( |
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| 260 | index=chp_generator_dh, |
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| 261 | data={ |
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| 262 | "scn_name": "eGon2035", |
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| 263 | "bus": chp_dh.loc[chp_generator_dh, "electrical_bus_id"].astype( |
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| 264 | int |
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| 265 | ), |
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| 266 | "p_nom": chp_dh.loc[chp_generator_dh, "el_capacity"], |
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| 267 | "carrier": "central_biomass_CHP", |
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| 268 | }, |
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| 269 | ) |
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| 270 | |||
| 271 | chp_el_gen["generator_id"] = range( |
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| 272 | db.next_etrago_id("generator"), |
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| 273 | len(chp_el_gen) + db.next_etrago_id("generator"), |
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| 274 | ) |
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| 275 | |||
| 276 | # Add marginal cost |
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| 277 | chp_el_gen["marginal_cost"] = get_sector_parameters( |
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| 278 | "electricity", "eGon2035" |
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| 279 | )["marginal_cost"]["biomass"] |
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| 280 | |||
| 281 | chp_el_gen.to_sql( |
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| 282 | targets["generator"]["table"], |
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| 283 | schema=targets["generator"]["schema"], |
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| 284 | con=db.engine(), |
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| 285 | if_exists="append", |
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| 286 | index=False, |
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| 287 | ) |
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| 288 | |||
| 289 | chp_heat_gen = pd.DataFrame( |
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| 290 | index=chp_generator_dh, |
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| 291 | data={ |
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| 292 | "scn_name": "eGon2035", |
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| 293 | "bus": chp_dh.loc[chp_generator_dh, "heat_bus_id"].astype(int), |
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| 294 | "p_nom": chp_dh.loc[chp_generator_dh, "th_capacity"], |
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| 295 | "carrier": "central_biomass_CHP_heat", |
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| 296 | }, |
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| 297 | ) |
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| 298 | |||
| 299 | chp_heat_gen["generator_id"] = range( |
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| 300 | db.next_etrago_id("generator"), |
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| 301 | len(chp_heat_gen) + db.next_etrago_id("generator"), |
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| 302 | ) |
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| 303 | |||
| 304 | chp_heat_gen.to_sql( |
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| 305 | targets["generator"]["table"], |
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| 306 | schema=targets["generator"]["schema"], |
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| 307 | con=db.engine(), |
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| 308 | if_exists="append", |
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| 309 | index=False, |
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| 310 | ) |
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| 311 | |||
| 312 | chp_industry = db.select_dataframe( |
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| 313 | f""" |
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| 314 | SELECT electrical_bus_id, ch4_bus_id, carrier, |
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| 315 | SUM(el_capacity) AS el_capacity, SUM(th_capacity) AS th_capacity |
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| 316 | FROM {sources['chp_table']['schema']}.{sources['chp_table']['table']} |
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| 317 | WHERE scenario='eGon2035' |
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| 318 | AND district_heating_area_id IS NULL |
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| 319 | GROUP BY (electrical_bus_id, ch4_bus_id, carrier) |
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| 320 | """ |
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| 321 | ) |
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| 322 | chp_link_ind = chp_industry[chp_industry.carrier != "biomass"].index |
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| 323 | |||
| 324 | chp_generator_ind = chp_industry[chp_industry.carrier == "biomass"].index |
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| 325 | |||
| 326 | chp_el_ind = link_geom_from_buses( |
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| 327 | gpd.GeoDataFrame( |
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| 328 | index=chp_link_ind, |
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| 329 | data={ |
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| 330 | "scn_name": "eGon2035", |
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| 331 | "bus0": chp_industry.loc[chp_link_ind, "ch4_bus_id"].astype( |
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| 332 | int |
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| 333 | ), |
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| 334 | "bus1": chp_industry.loc[ |
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| 335 | chp_link_ind, "electrical_bus_id" |
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| 336 | ].astype(int), |
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| 337 | "p_nom": chp_industry.loc[chp_link_ind, "el_capacity"], |
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| 338 | "carrier": "industrial_gas_CHP", |
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| 339 | }, |
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| 340 | ), |
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| 341 | "eGon2035", |
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| 342 | ) |
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| 343 | |||
| 344 | chp_el_ind["link_id"] = range( |
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| 345 | db.next_etrago_id("link"), len(chp_el_ind) + db.next_etrago_id("link") |
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| 346 | ) |
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| 347 | |||
| 348 | # Add marginal cost which is only VOM in case of gas chp |
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| 349 | chp_el_ind["marginal_cost"] = get_sector_parameters("gas", "eGon2035")[ |
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| 350 | "marginal_cost" |
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| 351 | ]["chp_gas"] |
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| 352 | |||
| 353 | chp_el_ind.to_postgis( |
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| 354 | targets["link"]["table"], |
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| 355 | schema=targets["link"]["schema"], |
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| 356 | con=db.engine(), |
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| 357 | if_exists="append", |
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| 358 | ) |
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| 359 | |||
| 360 | # Insert biomass CHP as generators |
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| 361 | chp_el_ind_gen = pd.DataFrame( |
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| 362 | index=chp_generator_ind, |
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| 363 | data={ |
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| 364 | "scn_name": "eGon2035", |
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| 365 | "bus": chp_industry.loc[ |
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| 366 | chp_generator_ind, "electrical_bus_id" |
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| 367 | ].astype(int), |
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| 368 | "p_nom": chp_industry.loc[chp_generator_ind, "el_capacity"], |
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| 369 | "carrier": "industrial_biomass_CHP", |
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| 370 | }, |
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| 371 | ) |
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| 372 | |||
| 373 | chp_el_ind_gen["generator_id"] = range( |
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| 374 | db.next_etrago_id("generator"), |
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| 375 | len(chp_el_ind_gen) + db.next_etrago_id("generator"), |
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| 376 | ) |
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| 377 | |||
| 378 | # Add marginal cost |
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| 379 | chp_el_ind_gen["marginal_cost"] = get_sector_parameters( |
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| 380 | "electricity", "eGon2035" |
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| 381 | )["marginal_cost"]["biomass"] |
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| 382 | |||
| 383 | chp_el_ind_gen.to_sql( |
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| 384 | targets["generator"]["table"], |
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| 385 | schema=targets["generator"]["schema"], |
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| 386 | con=db.engine(), |
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| 387 | if_exists="append", |
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| 388 | index=False, |
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| 389 | ) |
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| 390 | |||
| 391 | insert_egon100re() |
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| 392 |