Gravitricity
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Gravitricity
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Re: Gravitricity
#2Re: Gravitricity
#3Re: Gravitricity
#4Re: Gravitricity
#5I mean, since E = mgh, you can get the same energy storage capacity with a less deep hole if you use a heavier weight. And you can get a heavier weight either by using more expensive material (why use a cheap one? it's not like it's going to wear or anything), or a larger hole.
I'm not sure what determines the cost of digging a whole, but I suspect depth matters more than area.
Also, does the shaft has to be vertical? You could dig it with a sharp slope, and put your weight on rails. That would make the shaft longer for the same depth, but it would probably be easier to build and maintain.
Re: Gravitricity
#6I mean, technically I can get a super cap the size of jam jar to kick out 1 kw, just not for very long.
A watt is a unit of how much energy is expended in a second, not how much energy is stored. There is a reason why hydrostations in wales use lakes to store energy, because you need a lot of mass at great height to be of any use.
Re: Gravitricity
#7Is 90% efficiency really feasible for electrical -> mechanical -> electrical?
Re: Gravitricity
#8Edit:
here it is. https://news.ycombinator.com/item?id=6739349
Re: Gravitricity
#9What determines the depth of the whole? I mean, since E = mgh, you can get the same energy storage capacity with a less deep hole if you use a heavier weight. And you can get a heavier weight either by using more expensive material (why use a cheap one? it's not like it's going to wear or anything), or a larger hole. I'm not sure what determines the cost of digging a whole, but I suspect depth matters more than area.…