Gobi Desert.
It's far easier to harness solar there and then push it onto the coast than building a 15,000km submarine cable
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Gobi Desert.
It's far easier to harness solar there and then push it onto the coast than building a 15,000km submarine cable
Earlier quoted context omitted.
Honestly it's kinda brilliant. With a big enough global network of overbuilt solar capacity you would avoid the problems of the duck curve and weather limitations.
It's hard to build an actual network out of DC power, which is partially why AC power took over.
Earlier quoted context omitted.
It's on the order of 1.5%/1,000KM, so something like 20%-25% loss. Edit: a Chinese project with a 1.5%/1,000KM loss http://en.people.cn/n3/2018/0622/c90000-9474097.html
So the cost (price) of energy in the other end (china) should be 25%+ (plus the expected ROIC) to make this endeavor worthwhile
https://www.eia.gov/outlooks/aeo/pdf/electricity_generation....
European Commission Joint Research Center Technical Reports: HVDC Submarine Power Cables in the World https://publications.jrc.ec.europa.eu/repository/bitstream/J... According to table 1, losses for 800 kilovolt HVDC systems can be as low as 3.5% per 1000 km. That comes to 52.5% loss over 15,000 km. Losses should go lower at 1100 kilovolts (the highest voltage HVDC systems running today) but I can't find detailed los…
Wouldn't it be better to generate this power in the deserts of the middle east, and the wide open plains of Central Asia and transmit that over shorter distances despite producing less power per solar panel ?
What percentage of power is lost to line-loss at those distances? And if you are going to cover long distances you usually push up to 750kV or more: how long before there's an insulation breakdown somewhere along your 15,000km and you get some very energetic arcing and sparking underwater? Not to mention that it makes for an interesting asset to target (though only a few nations have the "tools" to attack power cable…
European Commission Joint Research Center Technical Reports: HVDC Submarine Power Cables in the World https://publications.jrc.ec.europa.eu/repository/bitstream/J... According to table 1, losses for 800 kilovolt HVDC systems can be as low as 3.5% per 1000 km. That comes to 52.5% loss over 15,000 km. Losses should go lower at 1100 kilovolts (the highest voltage HVDC systems running today) but I can't find detailed los…
> than making hydrogen via electrolysis i'd say synth gas would be more versatile option. Also they can like Iceland export the energy as aluminum or similar products taking a lot of energy to produce. (and a bit dreaming - i think Andes is the place to build a large rail gun style space launcher, and not just for one launch per week like, i mean large spaceport launching stuff non-stop and this is where beside launc…
Ammonia is the conventional option for long distance shipping of hydrogen. The ammonia can be used directly as the fuel or cracked at the destination for its hydrogen.
European Commission Joint Research Center Technical Reports: HVDC Submarine Power Cables in the World https://publications.jrc.ec.europa.eu/repository/bitstream/J... According to table 1, losses for 800 kilovolt HVDC systems can be as low as 3.5% per 1000 km. That comes to 52.5% loss over 15,000 km. Losses should go lower at 1100 kilovolts (the highest voltage HVDC systems running today) but I can't find detailed los…
European Commission Joint Research Center Technical Reports: HVDC Submarine Power Cables in the World https://publications.jrc.ec.europa.eu/repository/bitstream/J... According to table 1, losses for 800 kilovolt HVDC systems can be as low as 3.5% per 1000 km. That comes to 52.5% loss over 15,000 km. Losses should go lower at 1100 kilovolts (the highest voltage HVDC systems running today) but I can't find detailed los…
I make it as (100%-3.5%)^15 ~= 58.6% retained.
European Commission Joint Research Center Technical Reports: HVDC Submarine Power Cables in the World https://publications.jrc.ec.europa.eu/repository/bitstream/J... According to table 1, losses for 800 kilovolt HVDC systems can be as low as 3.5% per 1000 km. That comes to 52.5% loss over 15,000 km. Losses should go lower at 1100 kilovolts (the highest voltage HVDC systems running today) but I can't find detailed los…
Is ~50% retained more efficient than producing the solar power in Asia itself? Wouldn't it be better to generate this power in the deserts of the middle east, and the wide open plains of Central Asia and transmit that over shorter distances despite producing less power per solar panel ?
If we had a worldwide spanning power grid we wouldn't need to have a grid storage solution at all.