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Or 27% if you look at the actual figures in the previous paragraph.
However you look at it, we are still a long way from delivering 75 GW of electricity continuously from renewables
Not sure if you've ever used a heat pump to melt steel, make bricks, cement, or toilets, or even sterilise surgical linenware, but I can tell you from painful experience that they aren't all that reliable at 30 degrees, never mind 100 or 2000. Nor much use for cooking. And we burned a fair bit of fossil fuel building and installing the last one I worked with. Like we had to strip out all the old radiators, rip up the concrete floor, install a whole load of plastic insulation, lay some plastic pipes, cover them with concrete, and make a new floor. Just for one single-storey barn. If your building has wooden upper floors, I guess you'd need to strengthen the beams with steel to support the concrete, and pay the Russians and Saudis for the privilege of using their precious natural resources to do so.
We can cut a big chunk out of that .
Problem is that we have no control over wind speed and sun hours.
OK, so which part of "Quote from: Bored chemist on 13/11/2021 17:50:10We can cut a big chunk out of that .did you not understand?
IF ONLY we had a type of vehicle with a large battery with a couple of hundred mile range or so that could store solar and wind power for multiple days when it's available and use that to drive around in.
Quote from: wolfekeeper on 15/11/2021 03:15:54IF ONLY we had a type of vehicle with a large battery with a couple of hundred mile range or so that could store solar and wind power for multiple days when it's available and use that to drive around in.That would be great, if we had enough fossil fuel to make it, enough potential solar and wind energy to run it, and some way of dealing with the CO2 emitted during its manufacture. Damn physics keeps getting in the way.
Damn physics keeps getting in the way.
Which physics prevent them from happening?
Actually it's not physics