I suspect solar (including wind/biomass) + batteries is going to trounce fission reactors in the not terribly long term. If you think of finance in terms of latency/bandwidth (a model I use for lots of things), reactors are high latency - they're expensive and take a long time to set up. Meanwhile, solar/wind is heading toward dirt cheap and trivial to set up. Environmental impact is minimal, too. It doesn't require…
I suspect they will continue to trounce fission and fusion for a long time, at least until there is some some technical innovation in transmission and distribution. Transmission and distributed generation accounts for half the cost of electricity. The question for our electricity future is distributed versus centralized generation, and distributed will probably win.
Energy
201–210 of 287 posts
Re: Energy
#202> By combining our years of experience in fusion, newly available electronics technologies, and a revolutionary design using cutting-edge physics, Helion is making a fusion engine 1,000 times smaller, over 500 times cheaper, and realizable 10 time faster than other projects. What?!? I certainly appreciate the ambition, but humanity has spent seven decades and at least hundreds of billions of dollars on this very same…
How is that a measure of doing something meaningful ? Take EADS making the Ariane rocket launchers, they have been spending billions and billions of Euros making rockets for years, yet they have no project like SpaceX and yet they will be rapidly obsolete once SpaceX works as expected.
It's not about the amount you spend, it's about experimenting in new areas not explored yet. Now, about fusion, I have no idea what they plan to do, but in principle there's always new things worth trying (even if they end up failing).
Re: Energy
#203> By combining our years of experience in fusion, newly available electronics technologies, and a revolutionary design using cutting-edge physics, Helion is making a fusion engine 1,000 times smaller, over 500 times cheaper, and realizable 10 time faster than other projects. What?!? I certainly appreciate the ambition, but humanity has spent seven decades and at least hundreds of billions of dollars on this very same…
YC has demonstrated they aren't just throwing darts here, so vague pessimism is not the best default.
Re: Energy
#204> By combining our years of experience in fusion, newly available electronics technologies, and a revolutionary design using cutting-edge physics, Helion is making a fusion engine 1,000 times smaller, over 500 times cheaper, and realizable 10 time faster than other projects. What?!? I certainly appreciate the ambition, but humanity has spent seven decades and at least hundreds of billions of dollars on this very same…
For what it's worth, this is the kind of comment that looks hilarious in retrospect after every major breakthrough. YC has demonstrated they aren't just throwing darts here, so vague pessimism is not the best default.
Re: Energy
#205Earlier quoted context omitted.
For what it's worth, this is the kind of comment that looks hilarious in retrospect after every major breakthrough. YC has demonstrated they aren't just throwing darts here, so vague pessimism is not the best default.
I am literally asking "what?" Because I don't know of any common idea that is even in the realm of this. I'm hoping someone knew something about the process they're pursuing that is not commonly known among cargo cult physicists like myself.
http://www.nature.com/news/plasma-physics-the-fusion-upstart...
EDIT: This admittedly isn't very much information, but it's more than I could find on their official site.
Re: Energy
#206Earlier quoted context omitted.
I'll counter your wikipedia links with the issues and costs associated with decommissioning in the UK: https://en.wikipedia.org/wiki/Nuclear_Decommissioning_Author... Current estimates for one Nuclear Power Plant Site (Sellafield): £114bn which seems A LOT!
Sellafield isn't an ordinary nuclear power station. It was part of the UK's nuclear weapons program and contained some of the UK's earliest (maybe the earliest) nuclear reactors. It's not going to be representative of the decommissioning costs of modern generation II or generation III reactors.
Re: Energy
#207Distributed generation is where we should invest. Energy independence for the individual. Individual solar panels and batteries, personal windmills, personal reactors, etc. Imagine all the savings in infrastructure for energy transportation and reinvestment in other sectors. Imagine all the possibilities if people could switch their energy generation model as simple as buying a new product and installing it at home.…
>Imagine all the savings in infrastructure for energy transportation and reinvestment in other sectors. The decentralization of production usually leads to a greater cost per unit due to economies of scale. This may not be true for solar, but it certainly is for nuclear, hydro, geothermal and probably wind. There are regions in our planet that don't get many hours of sunlight, how should they produce energy there?
Re: Energy
#208Earlier quoted context omitted.
For what it's worth, this is the kind of comment that looks hilarious in retrospect after every major breakthrough. YC has demonstrated they aren't just throwing darts here, so vague pessimism is not the best default.
I am literally asking "what?" Because I don't know of any common idea that is even in the realm of this. I'm hoping someone knew something about the process they're pursuing that is not commonly known among cargo cult physicists like myself.
Re: Energy
#209Isn't decommissioning nuclear power plants still basically a huge bill underwritten by the tax payer? I'm not really sure about creating radioactive waste that has such huge half lives... From Wikipedia: Of particular concern in nuclear waste management are two long-lived fission products, Tc-99 (half-life 220,000 years) and I-129 (half-life 15.7 million years), which dominate spent fuel radioactivity after a few tho…
http://www.extremetech.com/extreme/187917-startup-gets-fundi...
Re: Energy
#210Earlier quoted context omitted.
> Isn't decommissioning nuclear power plants still basically a huge bill underwritten by the tax payer? That's an important question, but climate change is a far larger bill underwritten by the tax payer (and millions or billions more who can't afford taxes), so I don't think the question is a deal-breaker.
Yes it surely is. We need to take everything into the equation on where to go. - grey energy invested - full lifetime costs from start of construction until fully recovered land - inclusive recycling costs - inclusive environmental impacts