Solar Cell: Difference between revisions

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===== Optimal Ratios =====
===== Optimal Ratios =====
Solar components generate full power during the day and reduced power at night. Thus they need to be complemented with energy storage such as batteries. We can calculate how much energy we need if we know how much daylight power we need to replace at night and how long the night lasts.  Night lasts from 21:30 to 2:20, or 0.2 of the day, and days are 500, 1000, or 1500 seconds respectively depending on whether the day length has been set to Short, Normal, or Long. So the corresponding number of batteries is:
Solar components generate full power during the day and reduced power at night. Thus they need to be complemented with energy storage such as batteries. We can calculate how much energy we need if we know how much daylight power we need to replace at night and how long the night lasts.  Night lasts from 21:30 to 2:20, or 0.2 of the day, and days are 500, 1000, or 1500 seconds respectively depending on whether the day length has been set to Short, Normal, or Long. So the corresponding number of batteries is:

Revision as of 18:41, 2 October 2023

Solar Cell
     
     Photovoltaic cell that supplies <hl>50</> power to your grid during daylight, with increased output throughout summer.
Lua ID c_solar_cell
Size Small
Solar Power 50
Affected By Events yes



Recipe
Circuit Board Crystal Chunk Solar Cell
Circuit Board 2 Crystal Chunk 10 Arrow Right Solar Cell
Produced by
Assembler Time
16 seconds



Required Technology
Power Transference Power Transference



Optimal Ratios

Solar components generate full power during the day and reduced power at night. Thus they need to be complemented with energy storage such as batteries. We can calculate how much energy we need if we know how much daylight power we need to replace at night and how long the night lasts. Night lasts from 21:30 to 2:20, or 0.2 of the day, and days are 500, 1000, or 1500 seconds respectively depending on whether the day length has been set to Short, Normal, or Long. So the corresponding number of batteries is:

solar_power_generated * 0.8 * 0.2 * day_period / power_storage

day_period Capacitor Small Battery Medium Battery Large Battery
Short 2 0.26 0.08 0.02
Normal 4 0.53 0.16 0.04
Long 6 0.8 0.24 0.06
Tips
  • All power sources relying on batteries suffer from the fact that power transmitters can't run on battery power. Power Transmitters need to be put on a separate grid or they'll shut down when the base switches to battery power at night.
  • Other than Blight Power Generators, solar cells and Small Batteries in Building 1x1 (1S) are the most resource-efficient (and least space-efficient) way to generate power