Compact nuclear fusion reactor is 'very likely to work,' studies suggest
161–170 of 373 posts
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#162How's the Lockheed effort coming along?[1] [1] https://lockheedmartin.com/en-us/products/compact-fusion.htm...
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#163Earlier quoted context omitted.
You don't know that. What if you had spent 1000x the budget of the manhattan project on building an atom bomb in the year 1789? You would have gotten squat.
I don't think that's quite an apt comparison. The fundamental physics of an atomic bomb were not well known until the late 1800s. Apparently the Manhattan Project cost about $23 billion in 2007 dollars. ITER apparently had an initial budget of around $5 billion in 2005-6. By now, the construction cost is estimated to be at least $22 billion. It seems plausible that if we throw $15 or 20 billion at it in 2006, we coul…
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#164Earlier quoted context omitted.
My layman's understanding is that recently available (~last 5 years) industrial scale processes to produce rebco tape[1] is the specific advance in superconductor tech that's specifically enabling higher tesla magnetic field strengths from significantly smaller and lighter and easier to manage magnets, so you can get a system that's "powerful enough" to run net posititve at a size that's small enough to be built by a…
Yep; the key technology that took magnetic confinement fusion from 'ITER will probably work' to 'Maybe we should just go ahead and skip ITER' is rebco tape. The problem is that all known superconducting materials known will lose their ability to superconduct when exposed to a sufficiently strong magnetic field. The large field strengths induce eddy currents in the material which disrupt the propagation of the cooper…
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#165Earlier quoted context omitted.
There is ~zero expectation in the scientific community that fusion is going to be cheap at scale. It might eventually be cheaper than fission due to several factors. But, even that’s looking a long way off.
How so? Unlimited, non-radioactive fuel and inherent safety of the system alone could tip this scale pretty severely in favor of fusion once it becomes energy-positive. And remember, once that happens, investment is going to be through the roof, which will accelerate progress. Either the "scientific community" (whatever that means) is either too pessimistic about this, or you've just made this up.
But.
The fusion produces neutrons.[1] That means that at least some parts of the infrastructure can't avoid becoming radioactive. Decommissioning -- at the very least -- is still a problem.
Any actual nuclear physicists want to chime in here?
[1]Yes, the concept of "Aneutronic fusion" exists: https://en.wikipedia.org/wiki/Aneutronic_fusion>. But read the parts about the required conditions being much more extreme than D-T fusion.
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#166Earlier quoted context omitted.
It was my understanding that fission and fusion both use the same Nuclear Power Plant sized facility. Fusion just replaces the radioactive bit, you still need steam/electricity conversion/transmission/cooling... it's not like a suitcase you can plug wires into, you still need a massive 'factory' to make electricity, just the one bit is a safer.
I am really not buying the fact that nuclear is expensive because it's nuclear. I think the fears around it, the overregulation and opposition to it make it costly. Obviously, there have been plenty of plants that were profitable. Also, nuclear fusion is possibly the cleanest energy source we could get. If we touch this, we might have a real path forward.
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#167I wish these people the best, and I really hope they get a working fusion plant soon. That said, I can't resist sharing Admiral Rickover on academic reactors vs practical reactors: Important decisions about the future development of atomic power must frequently be made by people who do not necessarily have an intimate knowledge of the technical aspects of reactors. These people are, nonetheless, interested in what a…
Anyone could have said similar things about computers in 1953, and been just as correct.
Are nuclear reactors computers? Of course not, and neither have practical reactors kept pace in development with practical computers.
But neither is it inevitable that steady progress cannot grind down the latter set of characteristics into the former. Indeed, that's what I would bet on, and I think the Admiral would be disappointed in the progress we have(n't) made.
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#168Earlier quoted context omitted.
> this is still exciting given how anemic advancement in the fusion space has been for 50+ years At the top of my list for when I'll be king for a day is - massive, national-scale investments (think: reaching towards one percent of GDP) in fusion research. This is a major roadblock, but things look awesome on the other side. We just need to get our stuff together to hop over this fence somehow.
I think it’s generally very hard to force technological progress along by just throwing money at it. Let’s suppose this proposal works out, ITER will become a very expensive boondoggle. A technological dead end. But if you’d taken the ‘Manhattan Project’ approach and thrown 10x as much money at fusion research 20 years ago we’d most likely have spent most of it on a super-ITER. It might be operational by now and migh…
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#169Earlier quoted context omitted.
It was my understanding that fission and fusion both use the same Nuclear Power Plant sized facility. Fusion just replaces the radioactive bit, you still need steam/electricity conversion/transmission/cooling... it's not like a suitcase you can plug wires into, you still need a massive 'factory' to make electricity, just the one bit is a safer.
You don't need as much containment as you do for fission, because you don't deal similarly large amounts of highly radioactive isotopes. Consequently, the safety standards required are closer to fossil plants than to nuclear plants, and these safety standards are really what drives the cost of nuclear fission. The steam/electricity conversion/transmission/cooling" are also present in fossil plants, and these are sign…
Fission’s primary form of shielding is generally large pools of water or other coolant which don’t directly become radioactive. Fusion on the other hand needs to maintain a near vacuum so your pressure vessel is under heavy neutron bombardment. However, small amounts of radioactive materials get dissolved in the fission’s water which the goes on to contaminate the primary coolant loop which increased decommissioning costs. Fusion reactors primarily containment vessels becomes extremely radioactive and all the remote handling equipment also needs decontamination, but it’s unclear if the primary coolant loop will need similar types of decontamination.
And by small amounts, divers occasionally go in the same pools storing years of spent fuel rods. https://en.wikipedia.org/wiki/Spent_fuel_pool
Running the numbers the real difference is fission reactors need more protection from the outside world and containment for a potential meltdown. Thus thick though still fairly cheap walls, which generally don’t become radioactive. They last for 50 years and don’t actually cost that much to construct. Fusion however is a vastly more complex device which will also increase construction and decommissioning costs.
Re: Compact nuclear fusion reactor is 'very likely to work,' studies suggest
#170Earlier quoted context omitted.
I think it’s generally very hard to force technological progress along by just throwing money at it. Let’s suppose this proposal works out, ITER will become a very expensive boondoggle. A technological dead end. But if you’d taken the ‘Manhattan Project’ approach and thrown 10x as much money at fusion research 20 years ago we’d most likely have spent most of it on a super-ITER. It might be operational by now and migh…
ITER is a research project and will likely be very valuable, even more so when the compact reactors turn out to be viable. As amazing as the compact reactors are they still face many of the same challenges as ITER.