• Robbo@feddit.uk
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    13 hours ago

    I wonder - when the air is stored, presumably it’s atmospheric (cold) air, and also presumably it would pick up a bit of heat if it’s going deep underground, which would slightly increase the pressure and that extra energy would then be harvested on the way out, increasing efficiency? So if that’s right then it’s very slightly a geothermal plant too? Just thinking out loud but it’d be cool if that were right.

    • subversive_dev@lemmy.ml
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      12 hours ago

      Apparently

      The system includes 16 spherical water tanks, each capable of holding 3,500 cubic meters of water, with a total volume of 56,000 cubic meters — roughly equivalent to 22 standard swimming pools.

      These thermal storage tanks play a key role in the process by capturing heat generated during air compression and reusing it later to warm the released compressed air, improving efficiency and reducing energy loss.

      So you’re kind of right just with more steps

      • Robbo@feddit.uk
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        12 hours ago

        That heat isn’t the geothermal (i.e. picked up from the walls of the deep cave) heat though. That’s heat that was generated by the compressor when it compressed the air (so the energy source is the electrical input to the compressor - it’s basically waste heat). But that captured “waste” heat needs to be put back into the air when it’s decompressed, otherwise the temperature would drop far too low when it’s decompressed which causes an efficiency drop at best, and damage to the turbine at worst. Other compressed air storage systems use burning gas to heat up the air while it’s being decompressed, but this new design reuses the heat generated at the input for improved efficiency and no dependence on fossil fuels.

        So the water tanks aren’t related to my thought about picking up extra incidental geothermal heat.