3 ms·
Pumped hydro is interesting but the reservoir requirements are huuuge. This post makes a very convincing case that scaling it up is not that simple: http://phy
by aolagers 11y ago
Pumped hydro is interesting but the reservoir requirements are huuuge. This post makes a very convincing case that scaling it up is not that simple:
http://physics.ucsd.edu/do-the-math/2011/11/pump-up-the-storage/ http://physics.ucsd.edu/do-the-math/2011/11/pump-up-the-stor...
There is some discussion about the German rock variation in the comments. The density doesn't seem to help THAT much compared to water only.
- iolothebard 11y agoWonder how this works in relation to the earthquakes we're getting here in Oklahoma due to injection wells.
- infogulch 11y agoDensity isn't the only benefit of this system. At these scales, the water requirements alone are significant. This replaces many cubic meters of that water with rock.
- masklinn 11y agoThe other big advantage is that you don't need a tall hill to put a reservoir on top of. Sadly it seems the project has been at the "plan to get funding for a pilot" stage for at least 5 years now, and I still don't see how it'd seal.
- mineshaftgap 11y ago"to get the amount of energy stored in a single AA battery, we would have to lift 100 kg (220 lb) 10 m (33 ft) to match it. To match the energy contained in a gallon of gasoline, we would have to lift 13 tons of water (3500 gallons) one kilometer high (3,280 feet). It is clear that the energy density of gravitational storage is severely disadvantaged." http://physics.ucsd.edu/do-the-math/2011/11/pump-up-the-storage/ http://physics.ucsd.edu/do-the-math/2011/11/pump-up-the-stor...
- nkurz 11y agoIt's almost incredible that a AA battery can do that much work, but I checked the math: Alkaline AA Battery =~ 3 Wh =~ 10000 Nm Gravitational Potential Energy =~ kg * m * 10 N/kg 100 kg * 10 m * 10 N/kg == 10000 Nm == AA Battery It also puts into perspective how much solar energy is available. A single 200 W panel (~5 sq ft or ~.5 m^2) can charge hundreds of AA batteries per day, and thus would require lifting more than 10000 kg by 10 m to store a single day's output from just that one panel!