Conditions | 32 |
Total Lines | 700 |
Code Lines | 482 |
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:
Complex classes like data.datasets.pypsaeursec.neighbor_reduction() often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.
Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.
1 | """The central module containing all code dealing with importing data from |
||
266 | def neighbor_reduction(): |
||
267 | |||
268 | network = read_network() |
||
269 | |||
270 | wanted_countries = [ |
||
271 | "DE", |
||
272 | "AT", |
||
273 | "CH", |
||
274 | "CZ", |
||
275 | "PL", |
||
276 | "SE", |
||
277 | "NO", |
||
278 | "DK", |
||
279 | "GB", |
||
280 | "NL", |
||
281 | "BE", |
||
282 | "FR", |
||
283 | "LU", |
||
284 | ] |
||
285 | foreign_buses = network.buses[ |
||
286 | ~network.buses.index.str.contains("|".join(wanted_countries)) |
||
287 | ] |
||
288 | network.buses = network.buses.drop( |
||
289 | network.buses.loc[foreign_buses.index].index |
||
290 | ) |
||
291 | |||
292 | # drop foreign lines and links from the 2nd row |
||
293 | |||
294 | network.lines = network.lines.drop( |
||
295 | network.lines[ |
||
296 | (network.lines["bus0"].isin(network.buses.index) == False) |
||
297 | & (network.lines["bus1"].isin(network.buses.index) == False) |
||
298 | ].index |
||
299 | ) |
||
300 | |||
301 | # select all lines which have at bus1 the bus which is kept |
||
302 | lines_cb_1 = network.lines[ |
||
303 | (network.lines["bus0"].isin(network.buses.index) == False) |
||
304 | ] |
||
305 | |||
306 | # create a load at bus1 with the line's hourly loading |
||
307 | for i, k in zip(lines_cb_1.bus1.values, lines_cb_1.index): |
||
308 | network.add( |
||
309 | "Load", |
||
310 | "slack_fix " + i + " " + k, |
||
311 | bus=i, |
||
312 | p_set=network.lines_t.p1[k], |
||
313 | ) |
||
314 | network.loads.carrier.loc[ |
||
315 | "slack_fix " + i + " " + k |
||
316 | ] = lines_cb_1.carrier[k] |
||
317 | |||
318 | # select all lines which have at bus0 the bus which is kept |
||
319 | lines_cb_0 = network.lines[ |
||
320 | (network.lines["bus1"].isin(network.buses.index) == False) |
||
321 | ] |
||
322 | |||
323 | # create a load at bus0 with the line's hourly loading |
||
324 | for i, k in zip(lines_cb_0.bus0.values, lines_cb_0.index): |
||
325 | network.add( |
||
326 | "Load", |
||
327 | "slack_fix " + i + " " + k, |
||
328 | bus=i, |
||
329 | p_set=network.lines_t.p0[k], |
||
330 | ) |
||
331 | network.loads.carrier.loc[ |
||
332 | "slack_fix " + i + " " + k |
||
333 | ] = lines_cb_0.carrier[k] |
||
334 | |||
335 | # do the same for links |
||
336 | |||
337 | network.links = network.links.drop( |
||
338 | network.links[ |
||
339 | (network.links["bus0"].isin(network.buses.index) == False) |
||
340 | & (network.links["bus1"].isin(network.buses.index) == False) |
||
341 | ].index |
||
342 | ) |
||
343 | |||
344 | # select all links which have at bus1 the bus which is kept |
||
345 | links_cb_1 = network.links[ |
||
346 | (network.links["bus0"].isin(network.buses.index) == False) |
||
347 | ] |
||
348 | |||
349 | # create a load at bus1 with the link's hourly loading |
||
350 | for i, k in zip(links_cb_1.bus1.values, links_cb_1.index): |
||
351 | network.add( |
||
352 | "Load", |
||
353 | "slack_fix_links " + i + " " + k, |
||
354 | bus=i, |
||
355 | p_set=network.links_t.p1[k], |
||
356 | ) |
||
357 | network.loads.carrier.loc[ |
||
358 | "slack_fix_links " + i + " " + k |
||
359 | ] = links_cb_1.carrier[k] |
||
360 | |||
361 | # select all links which have at bus0 the bus which is kept |
||
362 | links_cb_0 = network.links[ |
||
363 | (network.links["bus1"].isin(network.buses.index) == False) |
||
364 | ] |
||
365 | |||
366 | # create a load at bus0 with the link's hourly loading |
||
367 | for i, k in zip(links_cb_0.bus0.values, links_cb_0.index): |
||
368 | network.add( |
||
369 | "Load", |
||
370 | "slack_fix_links " + i + " " + k, |
||
371 | bus=i, |
||
372 | p_set=network.links_t.p0[k], |
||
373 | ) |
||
374 | network.loads.carrier.loc[ |
||
375 | "slack_fix_links " + i + " " + k |
||
376 | ] = links_cb_0.carrier[k] |
||
377 | |||
378 | # drop remaining foreign components |
||
379 | |||
380 | network.lines = network.lines.drop( |
||
381 | network.lines[ |
||
382 | (network.lines["bus0"].isin(network.buses.index) == False) |
||
383 | | (network.lines["bus1"].isin(network.buses.index) == False) |
||
384 | ].index |
||
385 | ) |
||
386 | |||
387 | network.links = network.links.drop( |
||
388 | network.links[ |
||
389 | (network.links["bus0"].isin(network.buses.index) == False) |
||
390 | | (network.links["bus1"].isin(network.buses.index) == False) |
||
391 | ].index |
||
392 | ) |
||
393 | |||
394 | network.transformers = network.transformers.drop( |
||
395 | network.transformers[ |
||
396 | (network.transformers["bus0"].isin(network.buses.index) == False) |
||
397 | | (network.transformers["bus1"].isin(network.buses.index) == False) |
||
398 | ].index |
||
399 | ) |
||
400 | network.generators = network.generators.drop( |
||
401 | network.generators[ |
||
402 | (network.generators["bus"].isin(network.buses.index) == False) |
||
403 | ].index |
||
404 | ) |
||
405 | |||
406 | network.loads = network.loads.drop( |
||
407 | network.loads[ |
||
408 | (network.loads["bus"].isin(network.buses.index) == False) |
||
409 | ].index |
||
410 | ) |
||
411 | |||
412 | network.storage_units = network.storage_units.drop( |
||
413 | network.storage_units[ |
||
414 | (network.storage_units["bus"].isin(network.buses.index) == False) |
||
415 | ].index |
||
416 | ) |
||
417 | |||
418 | components = [ |
||
419 | "loads", |
||
420 | "generators", |
||
421 | "lines", |
||
422 | "buses", |
||
423 | "transformers", |
||
424 | "links", |
||
425 | ] |
||
426 | for g in components: # loads_t |
||
427 | h = g + "_t" |
||
428 | nw = getattr(network, h) # network.loads_t |
||
429 | for i in nw.keys(): # network.loads_t.p |
||
430 | cols = [ |
||
431 | j |
||
432 | for j in getattr(nw, i).columns |
||
433 | if j not in getattr(network, g).index |
||
434 | ] |
||
435 | for k in cols: |
||
436 | del getattr(nw, i)[k] |
||
437 | |||
438 | # writing components of neighboring countries to etrago tables |
||
439 | |||
440 | # Set country tag for all buses |
||
441 | network.buses.country = network.buses.index.str[:2] |
||
442 | neighbors = network.buses[network.buses.country != "DE"] |
||
443 | |||
444 | neighbors["new_index"] = ( |
||
445 | db.next_etrago_id("bus") + neighbors.reset_index().index |
||
446 | ) |
||
447 | |||
448 | # lines, the foreign crossborder lines |
||
449 | # (without crossborder lines to Germany!) |
||
450 | |||
451 | neighbor_lines = network.lines[ |
||
452 | network.lines.bus0.isin(neighbors.index) |
||
453 | & network.lines.bus1.isin(neighbors.index) |
||
454 | ] |
||
455 | if not network.lines_t["s_max_pu"].empty: |
||
456 | neighbor_lines_t = network.lines_t["s_max_pu"][neighbor_lines.index] |
||
457 | |||
458 | neighbor_lines.reset_index(inplace=True) |
||
459 | neighbor_lines.bus0 = ( |
||
460 | neighbors.loc[neighbor_lines.bus0, "new_index"].reset_index().new_index |
||
461 | ) |
||
462 | neighbor_lines.bus1 = ( |
||
463 | neighbors.loc[neighbor_lines.bus1, "new_index"].reset_index().new_index |
||
464 | ) |
||
465 | neighbor_lines.index += db.next_etrago_id("line") |
||
466 | |||
467 | if not network.lines_t["s_max_pu"].empty: |
||
468 | for i in neighbor_lines_t.columns: |
||
|
|||
469 | new_index = neighbor_lines[neighbor_lines["name"] == i].index |
||
470 | neighbor_lines_t.rename(columns={i: new_index[0]}, inplace=True) |
||
471 | |||
472 | # links |
||
473 | neighbor_links = network.links[ |
||
474 | network.links.bus0.isin(neighbors.index) |
||
475 | & network.links.bus1.isin(neighbors.index) |
||
476 | ] |
||
477 | |||
478 | neighbor_links.reset_index(inplace=True) |
||
479 | neighbor_links.bus0 = ( |
||
480 | neighbors.loc[neighbor_links.bus0, "new_index"].reset_index().new_index |
||
481 | ) |
||
482 | neighbor_links.bus1 = ( |
||
483 | neighbors.loc[neighbor_links.bus1, "new_index"].reset_index().new_index |
||
484 | ) |
||
485 | neighbor_links.index += db.next_etrago_id("link") |
||
486 | |||
487 | # generators |
||
488 | neighbor_gens = network.generators[ |
||
489 | network.generators.bus.isin(neighbors.index) |
||
490 | ] |
||
491 | neighbor_gens_t = network.generators_t["p_max_pu"][ |
||
492 | neighbor_gens[ |
||
493 | neighbor_gens.index.isin(network.generators_t["p_max_pu"].columns) |
||
494 | ].index |
||
495 | ] |
||
496 | |||
497 | neighbor_gens.reset_index(inplace=True) |
||
498 | neighbor_gens.bus = ( |
||
499 | neighbors.loc[neighbor_gens.bus, "new_index"].reset_index().new_index |
||
500 | ) |
||
501 | neighbor_gens.index += db.next_etrago_id("generator") |
||
502 | |||
503 | for i in neighbor_gens_t.columns: |
||
504 | new_index = neighbor_gens[neighbor_gens["name"] == i].index |
||
505 | neighbor_gens_t.rename(columns={i: new_index[0]}, inplace=True) |
||
506 | |||
507 | # loads |
||
508 | |||
509 | neighbor_loads = network.loads[network.loads.bus.isin(neighbors.index)] |
||
510 | neighbor_loads_t_index = neighbor_loads.index[ |
||
511 | neighbor_loads.index.isin(network.loads_t.p_set.columns) |
||
512 | ] |
||
513 | neighbor_loads_t = network.loads_t["p_set"][neighbor_loads_t_index] |
||
514 | |||
515 | neighbor_loads.reset_index(inplace=True) |
||
516 | neighbor_loads.bus = ( |
||
517 | neighbors.loc[neighbor_loads.bus, "new_index"].reset_index().new_index |
||
518 | ) |
||
519 | neighbor_loads.index += db.next_etrago_id("load") |
||
520 | |||
521 | for i in neighbor_loads_t.columns: |
||
522 | new_index = neighbor_loads[neighbor_loads["index"] == i].index |
||
523 | neighbor_loads_t.rename(columns={i: new_index[0]}, inplace=True) |
||
524 | |||
525 | # stores |
||
526 | neighbor_stores = network.stores[network.stores.bus.isin(neighbors.index)] |
||
527 | neighbor_stores_t_index = neighbor_stores.index[ |
||
528 | neighbor_stores.index.isin(network.stores_t.e_min_pu.columns) |
||
529 | ] |
||
530 | neighbor_stores_t = network.stores_t["e_min_pu"][neighbor_stores_t_index] |
||
531 | |||
532 | neighbor_stores.reset_index(inplace=True) |
||
533 | neighbor_stores.bus = ( |
||
534 | neighbors.loc[neighbor_stores.bus, "new_index"].reset_index().new_index |
||
535 | ) |
||
536 | neighbor_stores.index += db.next_etrago_id("store") |
||
537 | |||
538 | for i in neighbor_stores_t.columns: |
||
539 | new_index = neighbor_stores[neighbor_stores["name"] == i].index |
||
540 | neighbor_stores_t.rename(columns={i: new_index[0]}, inplace=True) |
||
541 | |||
542 | # storage_units |
||
543 | neighbor_storage = network.storage_units[ |
||
544 | network.storage_units.bus.isin(neighbors.index) |
||
545 | ] |
||
546 | neighbor_storage_t_index = neighbor_storage.index[ |
||
547 | neighbor_storage.index.isin(network.storage_units_t.inflow.columns) |
||
548 | ] |
||
549 | neighbor_storage_t = network.storage_units_t["inflow"][ |
||
550 | neighbor_storage_t_index |
||
551 | ] |
||
552 | |||
553 | neighbor_storage.reset_index(inplace=True) |
||
554 | neighbor_storage.bus = ( |
||
555 | neighbors.loc[neighbor_storage.bus, "new_index"] |
||
556 | .reset_index() |
||
557 | .new_index |
||
558 | ) |
||
559 | neighbor_storage.index += db.next_etrago_id("storage") |
||
560 | |||
561 | for i in neighbor_storage_t.columns: |
||
562 | new_index = neighbor_storage[neighbor_storage["name"] == i].index |
||
563 | neighbor_storage_t.rename(columns={i: new_index[0]}, inplace=True) |
||
564 | |||
565 | # Connect to local database |
||
566 | engine = db.engine() |
||
567 | |||
568 | neighbors["scn_name"] = "eGon100RE" |
||
569 | neighbors.index = neighbors["new_index"] |
||
570 | |||
571 | # Correct geometry for non AC buses |
||
572 | carriers = set(neighbors.carrier.to_list()) |
||
573 | carriers.remove("AC") |
||
574 | non_AC_neighbors = pd.DataFrame() |
||
575 | for c in carriers: |
||
576 | c_neighbors = neighbors[neighbors.carrier == c].set_index( |
||
577 | "location", drop=False |
||
578 | ) |
||
579 | for i in ["x", "y"]: |
||
580 | c_neighbors = c_neighbors.drop(i, axis=1) |
||
581 | coordinates = neighbors[neighbors.carrier == "AC"][ |
||
582 | ["location", "x", "y"] |
||
583 | ].set_index("location") |
||
584 | c_neighbors = pd.concat([coordinates, c_neighbors], axis=1).set_index( |
||
585 | "new_index", drop=False |
||
586 | ) |
||
587 | non_AC_neighbors = non_AC_neighbors.append(c_neighbors) |
||
588 | neighbors = neighbors[neighbors.carrier == "AC"].append(non_AC_neighbors) |
||
589 | |||
590 | for i in ["new_index", "control", "generator", "location", "sub_network"]: |
||
591 | neighbors = neighbors.drop(i, axis=1) |
||
592 | |||
593 | # Add geometry column |
||
594 | neighbors = ( |
||
595 | gpd.GeoDataFrame( |
||
596 | neighbors, geometry=gpd.points_from_xy(neighbors.x, neighbors.y) |
||
597 | ) |
||
598 | .rename_geometry("geom") |
||
599 | .set_crs(4326) |
||
600 | ) |
||
601 | |||
602 | # Unify carrier names |
||
603 | neighbors.carrier = neighbors.carrier.str.replace(" ", "_") |
||
604 | neighbors.carrier.replace( |
||
605 | { |
||
606 | "gas": "CH4", |
||
607 | "gas_for_industry": "CH4_for_industry", |
||
608 | }, |
||
609 | inplace=True, |
||
610 | ) |
||
611 | |||
612 | neighbors.to_postgis( |
||
613 | "egon_etrago_bus", |
||
614 | engine, |
||
615 | schema="grid", |
||
616 | if_exists="append", |
||
617 | index=True, |
||
618 | index_label="bus_id", |
||
619 | ) |
||
620 | |||
621 | # prepare and write neighboring crossborder lines to etrago tables |
||
622 | def lines_to_etrago(neighbor_lines=neighbor_lines, scn="eGon100RE"): |
||
623 | neighbor_lines["scn_name"] = scn |
||
624 | neighbor_lines["cables"] = 3 * neighbor_lines["num_parallel"].astype( |
||
625 | int |
||
626 | ) |
||
627 | neighbor_lines["s_nom"] = neighbor_lines["s_nom_min"] |
||
628 | |||
629 | for i in [ |
||
630 | "name", |
||
631 | "x_pu_eff", |
||
632 | "r_pu_eff", |
||
633 | "sub_network", |
||
634 | "x_pu", |
||
635 | "r_pu", |
||
636 | "g_pu", |
||
637 | "b_pu", |
||
638 | "s_nom_opt", |
||
639 | ]: |
||
640 | neighbor_lines = neighbor_lines.drop(i, axis=1) |
||
641 | |||
642 | # Define geometry and add to lines dataframe as 'topo' |
||
643 | gdf = gpd.GeoDataFrame(index=neighbor_lines.index) |
||
644 | gdf["geom_bus0"] = neighbors.geom[neighbor_lines.bus0].values |
||
645 | gdf["geom_bus1"] = neighbors.geom[neighbor_lines.bus1].values |
||
646 | gdf["geometry"] = gdf.apply( |
||
647 | lambda x: LineString([x["geom_bus0"], x["geom_bus1"]]), axis=1 |
||
648 | ) |
||
649 | |||
650 | neighbor_lines = ( |
||
651 | gpd.GeoDataFrame(neighbor_lines, geometry=gdf["geometry"]) |
||
652 | .rename_geometry("topo") |
||
653 | .set_crs(4326) |
||
654 | ) |
||
655 | |||
656 | neighbor_lines["lifetime"] = get_sector_parameters("electricity", scn)[ |
||
657 | "lifetime" |
||
658 | ]["ac_ehv_overhead_line"] |
||
659 | |||
660 | neighbor_lines.to_postgis( |
||
661 | "egon_etrago_line", |
||
662 | engine, |
||
663 | schema="grid", |
||
664 | if_exists="append", |
||
665 | index=True, |
||
666 | index_label="line_id", |
||
667 | ) |
||
668 | |||
669 | lines_to_etrago(neighbor_lines=neighbor_lines, scn="eGon100RE") |
||
670 | lines_to_etrago(neighbor_lines=neighbor_lines, scn="eGon2035") |
||
671 | |||
672 | # prepare and write neighboring crossborder links to etrago tables |
||
673 | def links_to_etrago(neighbor_links, scn="eGon100RE"): |
||
674 | neighbor_links["scn_name"] = scn |
||
675 | |||
676 | for i in [ |
||
677 | "name", |
||
678 | "geometry", |
||
679 | "tags", |
||
680 | "under_construction", |
||
681 | "underground", |
||
682 | "underwater_fraction", |
||
683 | "bus2", |
||
684 | "bus3", |
||
685 | "bus4", |
||
686 | "efficiency2", |
||
687 | "efficiency3", |
||
688 | "efficiency4", |
||
689 | "lifetime", |
||
690 | "p_nom_opt", |
||
691 | ]: |
||
692 | neighbor_links = neighbor_links.drop(i, axis=1) |
||
693 | |||
694 | # Define geometry and add to lines dataframe as 'topo' |
||
695 | gdf = gpd.GeoDataFrame(index=neighbor_links.index) |
||
696 | gdf["geom_bus0"] = neighbors.geom[neighbor_links.bus0].values |
||
697 | gdf["geom_bus1"] = neighbors.geom[neighbor_links.bus1].values |
||
698 | gdf["geometry"] = gdf.apply( |
||
699 | lambda x: LineString([x["geom_bus0"], x["geom_bus1"]]), axis=1 |
||
700 | ) |
||
701 | |||
702 | neighbor_links = ( |
||
703 | gpd.GeoDataFrame(neighbor_links, geometry=gdf["geometry"]) |
||
704 | .rename_geometry("topo") |
||
705 | .set_crs(4326) |
||
706 | ) |
||
707 | |||
708 | # Unify carrier names |
||
709 | neighbor_links.carrier = neighbor_links.carrier.str.replace(" ", "_") |
||
710 | |||
711 | neighbor_links.carrier.replace( |
||
712 | { |
||
713 | "H2_Electrolysis": "power_to_H2", |
||
714 | "H2_Fuel_Cell": "H2_to_power", |
||
715 | "H2_pipeline_retrofitted": "H2_retrofit", |
||
716 | "SMR": "CH4_to_H2", |
||
717 | "SMR_CC": "CH4_to_H2_CC", |
||
718 | "Sabatier": "H2_to_CH4", |
||
719 | "gas_for_industry": "CH4_for_industry", |
||
720 | "gas_for_industry_CC": "CH4_for_industry_CC", |
||
721 | "gas_pipeline": "CH4", |
||
722 | }, |
||
723 | inplace=True, |
||
724 | ) |
||
725 | |||
726 | neighbor_links.to_postgis( |
||
727 | "egon_etrago_link", |
||
728 | engine, |
||
729 | schema="grid", |
||
730 | if_exists="append", |
||
731 | index=True, |
||
732 | index_label="link_id", |
||
733 | ) |
||
734 | |||
735 | links_to_etrago(neighbor_links, "eGon100RE") |
||
736 | links_to_etrago(neighbor_links[neighbor_links.carrier == "DC"], "eGon2035") |
||
737 | |||
738 | # prepare neighboring generators for etrago tables |
||
739 | neighbor_gens["scn_name"] = "eGon100RE" |
||
740 | neighbor_gens["p_nom"] = neighbor_gens["p_nom_opt"] |
||
741 | neighbor_gens["p_nom_extendable"] = False |
||
742 | |||
743 | # Unify carrier names |
||
744 | neighbor_gens.carrier = neighbor_gens.carrier.str.replace(" ", "_") |
||
745 | |||
746 | neighbor_gens.carrier.replace( |
||
747 | { |
||
748 | "onwind": "wind_onshore", |
||
749 | "ror": "run_of_river", |
||
750 | "offwind-ac": "wind_offshore", |
||
751 | "offwind-dc": "wind_offshore", |
||
752 | "urban_central_solar_thermal": "urban_central_solar_thermal_collector", |
||
753 | "residential_rural_solar_thermal": "residential_rural_solar_thermal_collector", |
||
754 | "services_rural_solar_thermal": "services_rural_solar_thermal_collector", |
||
755 | }, |
||
756 | inplace=True, |
||
757 | ) |
||
758 | |||
759 | for i in ["name", "weight", "lifetime", "p_set", "q_set", "p_nom_opt"]: |
||
760 | neighbor_gens = neighbor_gens.drop(i, axis=1) |
||
761 | |||
762 | neighbor_gens.to_sql( |
||
763 | "egon_etrago_generator", |
||
764 | engine, |
||
765 | schema="grid", |
||
766 | if_exists="append", |
||
767 | index=True, |
||
768 | index_label="generator_id", |
||
769 | ) |
||
770 | |||
771 | # prepare neighboring loads for etrago tables |
||
772 | neighbor_loads["scn_name"] = "eGon100RE" |
||
773 | |||
774 | # Unify carrier names |
||
775 | neighbor_loads.carrier = neighbor_loads.carrier.str.replace(" ", "_") |
||
776 | |||
777 | neighbor_loads.carrier.replace( |
||
778 | { |
||
779 | "electricity": "AC", |
||
780 | "DC": "AC", |
||
781 | "industry_electricity": "AC", |
||
782 | "H2_pipeline": "H2_system_boundary", |
||
783 | "gas_for_industry": "CH4_for_industry", |
||
784 | }, |
||
785 | inplace=True, |
||
786 | ) |
||
787 | |||
788 | for i in ["index", "p_set", "q_set"]: |
||
789 | neighbor_loads = neighbor_loads.drop(i, axis=1) |
||
790 | |||
791 | neighbor_loads.to_sql( |
||
792 | "egon_etrago_load", |
||
793 | engine, |
||
794 | schema="grid", |
||
795 | if_exists="append", |
||
796 | index=True, |
||
797 | index_label="load_id", |
||
798 | ) |
||
799 | |||
800 | # prepare neighboring stores for etrago tables |
||
801 | neighbor_stores["scn_name"] = "eGon100RE" |
||
802 | |||
803 | # Unify carrier names |
||
804 | neighbor_stores.carrier = neighbor_stores.carrier.str.replace(" ", "_") |
||
805 | |||
806 | neighbor_stores.carrier.replace( |
||
807 | { |
||
808 | "Li_ion": "battery", |
||
809 | "gas": "CH4", |
||
810 | }, |
||
811 | inplace=True, |
||
812 | ) |
||
813 | neighbor_stores.loc[ |
||
814 | ( |
||
815 | (neighbor_stores.e_nom_max <= 1e9) |
||
816 | & (neighbor_stores.carrier == "H2") |
||
817 | ), |
||
818 | "carrier", |
||
819 | ] = "H2_underground" |
||
820 | neighbor_stores.loc[ |
||
821 | ( |
||
822 | (neighbor_stores.e_nom_max > 1e9) |
||
823 | & (neighbor_stores.carrier == "H2") |
||
824 | ), |
||
825 | "carrier", |
||
826 | ] = "H2_overground" |
||
827 | |||
828 | for i in ["name", "p_set", "q_set", "e_nom_opt", "lifetime"]: |
||
829 | neighbor_stores = neighbor_stores.drop(i, axis=1) |
||
830 | |||
831 | neighbor_stores.to_sql( |
||
832 | "egon_etrago_store", |
||
833 | engine, |
||
834 | schema="grid", |
||
835 | if_exists="append", |
||
836 | index=True, |
||
837 | index_label="store_id", |
||
838 | ) |
||
839 | |||
840 | # prepare neighboring storage_units for etrago tables |
||
841 | neighbor_storage["scn_name"] = "eGon100RE" |
||
842 | |||
843 | # Unify carrier names |
||
844 | neighbor_storage.carrier = neighbor_storage.carrier.str.replace(" ", "_") |
||
845 | |||
846 | neighbor_storage.carrier.replace( |
||
847 | {"PHS": "pumped_hydro", "hydro": "reservoir"}, inplace=True |
||
848 | ) |
||
849 | |||
850 | for i in ["name", "p_nom_opt"]: |
||
851 | neighbor_storage = neighbor_storage.drop(i, axis=1) |
||
852 | |||
853 | neighbor_storage.to_sql( |
||
854 | "egon_etrago_storage", |
||
855 | engine, |
||
856 | schema="grid", |
||
857 | if_exists="append", |
||
858 | index=True, |
||
859 | index_label="storage_id", |
||
860 | ) |
||
861 | |||
862 | # writing neighboring loads_t p_sets to etrago tables |
||
863 | |||
864 | neighbor_loads_t_etrago = pd.DataFrame( |
||
865 | columns=["scn_name", "temp_id", "p_set"], |
||
866 | index=neighbor_loads_t.columns, |
||
867 | ) |
||
868 | neighbor_loads_t_etrago["scn_name"] = "eGon100RE" |
||
869 | neighbor_loads_t_etrago["temp_id"] = 1 |
||
870 | for i in neighbor_loads_t.columns: |
||
871 | neighbor_loads_t_etrago["p_set"][i] = neighbor_loads_t[ |
||
872 | i |
||
873 | ].values.tolist() |
||
874 | |||
875 | neighbor_loads_t_etrago.to_sql( |
||
876 | "egon_etrago_load_timeseries", |
||
877 | engine, |
||
878 | schema="grid", |
||
879 | if_exists="append", |
||
880 | index=True, |
||
881 | index_label="load_id", |
||
882 | ) |
||
883 | |||
884 | # writing neighboring generator_t p_max_pu to etrago tables |
||
885 | neighbor_gens_t_etrago = pd.DataFrame( |
||
886 | columns=["scn_name", "temp_id", "p_max_pu"], |
||
887 | index=neighbor_gens_t.columns, |
||
888 | ) |
||
889 | neighbor_gens_t_etrago["scn_name"] = "eGon100RE" |
||
890 | neighbor_gens_t_etrago["temp_id"] = 1 |
||
891 | for i in neighbor_gens_t.columns: |
||
892 | neighbor_gens_t_etrago["p_max_pu"][i] = neighbor_gens_t[ |
||
893 | i |
||
894 | ].values.tolist() |
||
895 | |||
896 | neighbor_gens_t_etrago.to_sql( |
||
897 | "egon_etrago_generator_timeseries", |
||
898 | engine, |
||
899 | schema="grid", |
||
900 | if_exists="append", |
||
901 | index=True, |
||
902 | index_label="generator_id", |
||
903 | ) |
||
904 | |||
905 | # writing neighboring stores_t e_min_pu to etrago tables |
||
906 | neighbor_stores_t_etrago = pd.DataFrame( |
||
907 | columns=["scn_name", "temp_id", "e_min_pu"], |
||
908 | index=neighbor_stores_t.columns, |
||
909 | ) |
||
910 | neighbor_stores_t_etrago["scn_name"] = "eGon100RE" |
||
911 | neighbor_stores_t_etrago["temp_id"] = 1 |
||
912 | for i in neighbor_stores_t.columns: |
||
913 | neighbor_stores_t_etrago["e_min_pu"][i] = neighbor_stores_t[ |
||
914 | i |
||
915 | ].values.tolist() |
||
916 | |||
917 | neighbor_stores_t_etrago.to_sql( |
||
918 | "egon_etrago_store_timeseries", |
||
919 | engine, |
||
920 | schema="grid", |
||
921 | if_exists="append", |
||
922 | index=True, |
||
923 | index_label="store_id", |
||
924 | ) |
||
925 | |||
926 | # writing neighboring storage_units inflow to etrago tables |
||
927 | neighbor_storage_t_etrago = pd.DataFrame( |
||
928 | columns=["scn_name", "temp_id", "inflow"], |
||
929 | index=neighbor_storage_t.columns, |
||
930 | ) |
||
931 | neighbor_storage_t_etrago["scn_name"] = "eGon100RE" |
||
932 | neighbor_storage_t_etrago["temp_id"] = 1 |
||
933 | for i in neighbor_storage_t.columns: |
||
934 | neighbor_storage_t_etrago["inflow"][i] = neighbor_storage_t[ |
||
935 | i |
||
936 | ].values.tolist() |
||
937 | |||
938 | neighbor_storage_t_etrago.to_sql( |
||
939 | "egon_etrago_storage_timeseries", |
||
940 | engine, |
||
941 | schema="grid", |
||
942 | if_exists="append", |
||
943 | index=True, |
||
944 | index_label="storage_id", |
||
945 | ) |
||
946 | |||
947 | # writing neighboring lines_t s_max_pu to etrago tables |
||
948 | if not network.lines_t["s_max_pu"].empty: |
||
949 | neighbor_lines_t_etrago = pd.DataFrame( |
||
950 | columns=["scn_name", "s_max_pu"], index=neighbor_lines_t.columns |
||
951 | ) |
||
952 | neighbor_lines_t_etrago["scn_name"] = "eGon100RE" |
||
953 | |||
954 | for i in neighbor_lines_t.columns: |
||
955 | neighbor_lines_t_etrago["s_max_pu"][i] = neighbor_lines_t[ |
||
956 | i |
||
957 | ].values.tolist() |
||
958 | |||
959 | neighbor_lines_t_etrago.to_sql( |
||
960 | "egon_etrago_line_timeseries", |
||
961 | engine, |
||
962 | schema="grid", |
||
963 | if_exists="append", |
||
964 | index=True, |
||
965 | index_label="line_id", |
||
966 | ) |
||
986 |