I wonder how would the results vary if for every MW of renewables there was 100kWh of storage (using flywheels, lipo, thermal rock, gravity, etc...). I really believe a future with 100% renewables is very, very close. Will happen in the 2030s.
That’s only 6 minutes of peak load worth of storage (assuming it’s rated on output kWh, perhaps only 5 minutes otherwise). If you have three different types of renewables, all equally sized, and uncorrelated, it’s 18/15 minutes against a single type of renewable being offline. That doesn’t seem like enough for a 100% renewables grid to be 3 9’s reliable.
A near 100% renewables grid is well within reach, and with little storage
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Re: A near 100% renewables grid is well within reach, and with little storage
#172Earlier quoted context omitted.
Yeah, but that renewable hydro is unlikely to grow much in the USA, while wind and solar will be growing exponentially. Hydro is cool, and works well with solar/wind/nuclear to help match supply and demand, but ... If you look at global renewable output, the big chunk of hydro production that's been flat for decades, somewhat obscures the recent sudden rise of solar and wind.
Swapping hydro from 24/7 power to a backup for wind and solar goes a long way to eliminate the need for storage. We don’t need more total kWh per year of hydro we need to be able to more flexibility get those kWh.
Long story short - hydro is good as a 'base load' but we desperately need storage. Pumped storage, battery storage, compression storage. And we need massive transmission system upgrades (in the US at least). Nothing else will lead to a reliable grid based on renewables in the US.
Re: A near 100% renewables grid is well within reach, and with little storage
#173"in Australia" is an important qualification here. Australia has a very high ratio of available solar and wind energy to population. Not that getting Australia fully on renewables wouldn't be exciting. But it is definitely an easier target than say the US.
Australian energy prices doubled in the last 6 months. I'm not sure who would ever use the Australian market as a model, other than "under no circumstances follow suit".
This is so obviously a bad idea that even the CEO of a major energy firm has suggested the purchase market be split between renewable and fossil, so there are effectively two markets, and everyone can take advantage of cheap renewable prices.
You should learn about this stuff rather than parroting the nuclear fanbook.
Re: A near 100% renewables grid is well within reach, and with little storage
#174Earlier quoted context omitted.
The problem is that electrification of fossil fuel applications is going to significantly increase the demand on our grid. So it’s not enough to get to parity in renewables, but we have to go far beyond our current capacity in order to accommodate a world in which almost every car is electric (whether electric hybrid or green hydrogen) and almost every home uses electric rather than natural gas for heating (not to me…
It's going to increase the amount of energy flowing through the grid, but there's plenty of excess grid capacity to accommodate that. The grid is a technological marvel, but one weakness about it is that it has never included storage except small amount of hydro (which I've heard some claim is because nuclear needed it so that the reactor could stay always on, but I have my doubts on that origin story) Without storag…
Re: A near 100% renewables grid is well within reach, and with little storage
#175Earlier quoted context omitted.
No, because there never is such an issue. Renewables can turn themselves off and on so fast that this won't ever be a problem. The current Australian model we're discussing has about 15% 'overgeneration' because that's economically efficient, there's no problems caused by that.
What you have in mind requires someone to do the coordination. that is currently the system operator and they operate at a data rate measured in minutes or 4 s for the fastest changes (e.g. PJM). Meanwhile, solar output can go from 100% to 10% in three seconds. How is this not a problem?
Also, medium term storage is a very, very young industry. Things like redox batteries, flow batteries, molten salt, compressed air, and many others are on the horizon. The better these work the more gas peakers are solely used as backup.
Re: A near 100% renewables grid is well within reach, and with little storage
#176Earlier quoted context omitted.
> US intends to hit this target (i.e. 95% carbon-free generation) in 8 years I think, with 100% and wider electrification of current fossil fuel uses in 2035 This seems ambitious. Source?
And the big elephant in the room? getting the US military on board is going to be tough. Every year, US armed forces consume more than 100 million barrels of oil to power ships, vehicles, aircraft, and ground operations
https://www.reuters.com/article/us-usa-military-green-energy...
> The military’s push into alternative energy started under Republican President George W. Bush in 2007, when he signed a law requiring the Pentagon to get 25 percent of the electricity for its buildings from renewable energy by 2025.
Re: A near 100% renewables grid is well within reach, and with little storage
#177Earlier quoted context omitted.
That’s only 6 minutes of peak load worth of storage (assuming it’s rated on output kWh, perhaps only 5 minutes otherwise). If you have three different types of renewables, all equally sized, and uncorrelated, it’s 18/15 minutes against a single type of renewable being offline. That doesn’t seem like enough for a 100% renewables grid to be 3 9’s reliable.
Demand can be regulated to meet supply using various ways (eg pricing, quotas, etc).
Re: A near 100% renewables grid is well within reach, and with little storage
#178Earlier quoted context omitted.
Getting to 100% carbon-free generation is a goal of the President's Long Term Strategy [1]: > DECARBONIZE ELECTRICITY. Electricity delivers > diverse services to all sectors of the American > economy. The transition to a clean electricity > system has been accelerating in recent years— > driven by plummeting costs for solar and wind > technologies, federal and subnational policies, > and consumer demand. Building on…
I think the latter is talking about procurement of energy by the government, not generation. Which obviously helps and is something the government has more control over, but is a slightly different thing. The 100% by 2035 is fairly widely communicated, but there's definately a document that talks about aiming for 95% in 2030 and then focusing on electrification of other sectors as the diminishing returns start to hit…
Cute how they don’t link to the order nor mention its number. Here it is [1].
It exempts the GAO and independent agencies as well as anything not “an executive agency as defined in section 105 of title 5, United States Code” (§ 603.b). So no military, which is reasonable.
[1] https://www.whitehouse.gov/briefing-room/presidential-action...
Re: A near 100% renewables grid is well within reach, and with little storage
#179Re: A near 100% renewables grid is well within reach, and with little storage
#180Earlier quoted context omitted.
No, because there never is such an issue. Renewables can turn themselves off and on so fast that this won't ever be a problem. The current Australian model we're discussing has about 15% 'overgeneration' because that's economically efficient, there's no problems caused by that.
It's not a technical issue, but an economic one. If you have so much wind and solar generation that they spend too much of their lifespans sitting idle and not generating income, they potentially never even pay for their initial build cost and basic maintenance, let alone be a better investment than just buying a treasury note yielding 1%. That's a recipe for long term stagnation and depression.