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Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

imperial.ac.uk

431–440 of 494 posts

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#431

Earlier quoted context omitted.

I will admit that I'm not an engineer of any relevant area here. So I offer this only as a matter of general judgment & experience, which you are welcome to say "does not apply." (But please say why it doesn't.) It's always been my impression that building things on a huge, factory-wide scale is a radically different problem than building a demo, or even reasoning about it. The latter is what you are all doing. As lo…

Communication is a difficult thing, especially written communication. I work proactively to get better at it when the opportunities to do so arise. In your initial response, and in this one, what I "hear" is that what you heard was somehow either dismissive or disrespectful of the experience the OP brought to the table. I am interested in understanding what it was about my words that gave you that impression. I do un…

Sorry if I was curt, Chuck. I reread OP's post and your later dialog. It's interesting that you mention something I thought of but I hadn't seen before: the capacity of the grid to handle a very large power source.

I saw "3 Gw" as a comfortable max right now, maybe even that was from you; I don't know how accurate that is, but let's go with it for the moment. Let's say that you can't connect a power source larger than 3 Gw currently, although maybe raising that number is straightforward.

So it seems almost beyond dispute that the capital cost of building a fusion plant will be immense -- far, far larger than any other type, and that would be true for any type of fuel that hasn't been used before, purely because it's Plant #1. Plant #100 always costs way less.

But fusion isn't just any type of new fuel; it's radically different and unknown as to its properties. Will the neutron bombardment break it down in a couple years? Won't there be something that needs regular maintenance? No one knows how this thing will behave in 24x7 use, and yet the cost will be huge.

As OP said, even with free fuel, the capital cost of a geothermal or waste heat plant makes it noncompetitive with natural gas, and your argument is that fusion will produce so much electricity that the inequality will change.

So it costs huge sums to build the thing, and that can only be worthwhile if it produces huge amounts of power. More than 3 Gw. Furthermore, any downtime is horrifically expensive: you have to keep amortizing those construction costs.

So we probably have to upgrade the grid to handle these things and we have to over-engineer the thing grossly to avoid that expensive downtime.

One can argue that these are just part of the learning curve for any new technology. That might be true, but it probably means that it'll be 100 years before fusion is a big win.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#432
post #162

Earlier quoted context omitted.

Very likely, each fusion plant (if they ever exist) would require, ironically, a fission plant next door to provide the power required for the magnets. The magnets, and wiring won't be cheap. The power delivery and control won't be cheap. I'm not sure how this would be amortized into the cost of the power, without making it 2-3x (or more) more expensive than alternatives. We can build, and we need, nuclear plants now…

> We can build, and we need, nuclear plants now, to be able to generate cheap/plentiful electric power. And if we don't we're basically going to have to push the brakes on EV deployment. Or light up more NG/Oil plants to provide the power for those. The real power generation tech here will be wind and solar, not nuclear. We can build lots and lots and lots of it, easily and cheaply. And using it to charge vehicle bat…

I wish there was more interest in electrifying our major roads and freeways (i.e. allowing cars to charge while they're moving) in part to reduce the necessity of hauling giant batteries around everywhere, but also to shift EV power use from mostly-nighttime to mostly-daytime when more solar power is available.

Another option is to get some high-capacity high-voltage DC lines connecting continents so that countries around the world can sell power during the day and buy it at night. We can keep the fossil fuel plants around as emergency backup.

At this point, though, we're a long way even from being able to shut off the fossil fuel plants during the day while the sun is shining.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#433

Earlier quoted context omitted.

Internal combustion piston engines also do intermittent combustion. If you were to make a power plant based off of this, you would need dozens of these per second (and much more efficient lasers and a tritium breeding liquid lithium metal jacket and… a lot of other stuff).

The capsules are tiny and do not generate usefull amount of energy. ITER is planned to generate 500,000,000W. Thats actually usefull

According to Sabine Hossenfelder, ITER will only actually generate 0.57 of what's put in. The large number out isn't the full story.

http://backreaction.blogspot.com/2021/10/how-close-is-nuclea...

> You have seen in the earlier quotes about ITER that the energy input is normally said to be 50 MegaWatts. But according to the head of the Electrical Engineering Division of the ITER Project, Ivone Benfatto, ITER will consume about 440 MegaWatts while it produces fusion power. That gives us an estimate for the total energy that goes in.

> Though that is misleading already because 120 of those 440 MegaWatts are consumed whether or not there’s any plasma in the reactor, so using this number assumes the thing would be running permanently. But okay, let’s leave this aside.

> The plan is that ITER will generate 500 MegaWatts of fusion power in heat. If we assume a 50% efficiency for converting this heat into electricity, ITER will produce about 250 MegaWatts of electric power.

> That gives us a Q total of about 0.57. That’s less than a tenth of the normally stated Q plasma of 10. Even optimistically, ITER will still consume roughly twice the power it generates. What’s with the earlier claim of a Q of 0.67 for the JET experiment? Same thing.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#434
post #233
post #199

Earlier quoted context omitted.

Exhaust from a gas turbine for a pipeline compression station is around 600C at about 95kg/second. That flow contains about 100MW of heat energy, which can be captured with Organic Rankine Cycle (like steam cycle, but using organic fluids like cyclopentane as a working fluid to better match the thermodynamics) about 20% of that can be converted to electricity. This is off-the-shelf tech. The problem isn't the technol…

The parent was pointing out that the economics are also a fundamental limit of the technology/physics. If you can do a lot of work with expensive machines to get 20MW from that plant, but you can also do less work and spend less money getting an extra 20MW by burning some cheap primary fuel (with higher quality heat/aka a bigger delta), then they’re just going to burn more primary fuel. It’s a bit silly to do it any…

This effect goes back to the steam engine era. Steam engines were sometimes built with multiple cylinders, each successive cylinder larger, and running at lower pressure, than the previous cylinder. "Triple expansion" seemed to be the upper limit of cost-effectiveness. Some quadruple expansion engines were used successfully, but not many. At least one quintuple expansion engine was built, and used in a Norwegian fishing boat.[1]

[1] http://www.warsailors.com/singleships/kos.html

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#435
post #432

Earlier quoted context omitted.

> We can build, and we need, nuclear plants now, to be able to generate cheap/plentiful electric power. And if we don't we're basically going to have to push the brakes on EV deployment. Or light up more NG/Oil plants to provide the power for those. The real power generation tech here will be wind and solar, not nuclear. We can build lots and lots and lots of it, easily and cheaply. And using it to charge vehicle bat…

I wish there was more interest in electrifying our major roads and freeways (i.e. allowing cars to charge while they're moving) in part to reduce the necessity of hauling giant batteries around everywhere, but also to shift EV power use from mostly-nighttime to mostly-daytime when more solar power is available. Another option is to get some high-capacity high-voltage DC lines connecting continents so that countries a…

Eh, storage is a solved problem for passenger vehicles. It's really only long haul that's a problem. Electrifying roads is too expensive, for too little benefit. Electrifying rail, however, would be a fine idea.

Nearly all vehicles are parked for most of the day. We should incentivize workplace charging, to help with that.

But really, we must drastically reduce our need for driving. We simply can't scale EV production quickly enough to make the impacts we need to. If we want to reduce car emissions by half by 2030, we need to be at 100% EV sales very very soon, and we are no where close to it.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#436
post #326

Earlier quoted context omitted.

I think it's best to look at the options through a risk matrix. Is it possible that an earthquake is generated by fracking that is big enough to geologically connect a hydrocarbon formation with a surface aquifer thousands of feet above it? I suppose, but I think it is very unlikely. I don't think there are any cases of that on record, and wells have been fracked in the US for many decades (although not as frequently…

Absent from your analysis is the risk presented by global warming. Obviously, transitioning the energy sources for an entire group of nations is risky and absolutely the kind of thing you expect to be a bumpy ride. On the other hand, uncontrolled global warming is far more risky - at worst, the energy shortages present a limited economic challenge. Global warming presents an existential challenge at worst, and an unb…

They are other important uses hydrocarbons other than energy production. So calling them obsolete seems a bit of a stretch.

For example take coal one of the dirtiest fossil fuels. Steel plants making carbon steel steel need to convert that coal into coke. Even an electric arc furnace needs coke to make carbon steel.

Similar things with other hydro-carbons. So its not like we are gonna stop using them even if the grid was entirely renewable and nuclear.

Now industrial processes that use such hydrocarbons to produce useful stuff other than energy are certainly a minority of the market. So mines and wells for such things will still exist. So the tech is still useful, but we just ideally stop using these hydro-carbons as fuel.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#437

Earlier quoted context omitted.

Communication is a difficult thing, especially written communication. I work proactively to get better at it when the opportunities to do so arise. In your initial response, and in this one, what I "hear" is that what you heard was somehow either dismissive or disrespectful of the experience the OP brought to the table. I am interested in understanding what it was about my words that gave you that impression. I do un…

Sorry if I was curt, Chuck. I reread OP's post and your later dialog. It's interesting that you mention something I thought of but I hadn't seen before: the capacity of the grid to handle a very large power source. I saw "3 Gw" as a comfortable max right now, maybe even that was from you; I don't know how accurate that is, but let's go with it for the moment. Let's say that you can't connect a power source larger tha…

No worries, I didn't think you were being curt, I just wanted to be sure I was understanding what you were trying to tell me. My goal is to add light not heat to the discussion (thermo pun).

We definitely approach this sort of thing differently. To use your first example:

"So it seems almost beyond dispute that the capital cost of building a fusion plant will be immense -- far, far larger than any other type, and that would be true for any type of fuel that hasn't been used before, purely because it's Plant #1. Plant #100 always costs way less."

I completely agree that it may turn out that building fusion plants are prohibitively expensive. That isn't "disputing" the assertion it is simply accepting that it may or may not turn out to be the case.

The way I approach it however is this; Let's assume there are a bunch of possible futures. Some of them are like "Fusion plants cost 10x more than even Nuclear plants" and that future is not interesting from discussion point of view because the market won't allow that sort of thing to survive. So let's consider what would indicate that they would be financially feasible.

So looking at that one question, we have a couple of interesting examples. There is ITER which is consuming billions of dollars.

Not all of the expenses there would be present in building the next one as you note. Still, even if they were half as much the plant would be hugely expensive.

Then we have the Wendelstein 7-x stellerator[1], the HIT-SI system[2] at UW, the Lockheed Martin entry[3], and the MIT ARC project[4].

So in one future one of these alternate implementation strategies "wins" and we get fusion plants that are both functional and affordable.

So if we're going to talk about something we can talk about all the possibilities.

So we can be in complete agreement that fusion may never be feasible while still talking about what would need to be true so that it was[5].

And I'll wrap up with this, you wrote:

"As OP said, even with free fuel, the capital cost of a geothermal or waste heat plant makes it noncompetitive with natural gas, and your argument is that fusion will produce so much electricity that the inequality will change.

So it costs huge sums to build the thing, and that can only be worthwhile if it produces huge amounts of power. More than 3 Gw. Furthermore, any downtime is horrifically expensive: you have to keep amortizing those construction costs."

That wasn't what I was trying to communicate though. IF the cost of production for a fusion plant is comparable to the cost of production of a fission plant, and the fusion plant can produce twice as much energy, then based on the LCOE of Nuclear plants the LCOE of fusion energy would be a market leader. So what I do is look for things that might inform the question, "What's it going to cost to build a fusion plant?" and try to glean any insights I can from what I find.

I also agree that if fusion plants cost much more than nuclear plants to produce the same amount or less energy, then they will not be successful in the market place.

Everyone I've talked to who is trying to build commercial fusion are targeting for much less expensive than nuclear but success is never guaranteed.

[1] https://www.ipp.mpg.de/w7x

[2] https://sites.uw.edu/hitsilab/

[3] https://lockheedmartin.com/en-us/products/compact-fusion.htm...

[4] https://library.psfc.mit.edu/catalog/reports/2010/15ja/15ja0...

[5] Yes, some people will say "Well its a waste of time to talk about something that you don't know if it can even be done." And yet, for me, it is a pragmatic use of time because unexpected things happen all the time. A case I lived through was the GM "EV-1" electric vehicle where many engineers I knew wanted to stop talking about electric cars because GM has "proven" they weren't feasible and no one would buy them because they would take to long to recharge and no one is willing to wait that long at the recharging station. That was all true during those discussions. But Tesla showed what you could do if you built one differently, and now everyone seems to think electric vehicles are the future of all cars. So for me, it isn't worthless to think about these things.

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#438
post #397

Earlier quoted context omitted.

It's not a cover, it's an explicit purpose of the facility: NIF uses lasers to heat and compress a small amount of hydrogen fuel with the goal of inducing nuclear fusion reactions. NIF's mission is to achieve fusion ignition with high energy gain, and to support nuclear weapon maintenance and design by studying the behavior of matter under the conditions found within nuclear weapons

Like many other advancements, civilian use has been a nice side effect of the primary driver of advancement.

Cheaper lasers that are useful for diagnostics in actual fusion energy research machines?

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#439

Earlier quoted context omitted.

Sorry if I was curt, Chuck. I reread OP's post and your later dialog. It's interesting that you mention something I thought of but I hadn't seen before: the capacity of the grid to handle a very large power source. I saw "3 Gw" as a comfortable max right now, maybe even that was from you; I don't know how accurate that is, but let's go with it for the moment. Let's say that you can't connect a power source larger tha…

No worries, I didn't think you were being curt, I just wanted to be sure I was understanding what you were trying to tell me. My goal is to add light not heat to the discussion (thermo pun). We definitely approach this sort of thing differently. To use your first example: "So it seems almost beyond dispute that the capital cost of building a fusion plant will be immense -- far, far larger than any other type, and tha…

> "Then we have the Wendelstein 7-x stellerator[1], the HIT-SI system[2] at UW, the Lockheed Martin entry[3], and the MIT ARC project[4]."

Well, we're at the limits of my "competence." I guess it comes down to "what does a plant cost to build?" and I have absolutely no clue.

I don't think that "sunny optimism" is always the best attitude in everything, like it's been for us in computers the last 50 years, but you don't seem guilty of that. So: thanks & good luck!

Re: Major nuclear fusion milestone reached as ‘ignition’ triggered in a lab

#440

Earlier quoted context omitted.

No worries, I didn't think you were being curt, I just wanted to be sure I was understanding what you were trying to tell me. My goal is to add light not heat to the discussion (thermo pun). We definitely approach this sort of thing differently. To use your first example: "So it seems almost beyond dispute that the capital cost of building a fusion plant will be immense -- far, far larger than any other type, and tha…

> "Then we have the Wendelstein 7-x stellerator[1], the HIT-SI system[2] at UW, the Lockheed Martin entry[3], and the MIT ARC project[4]." Well, we're at the limits of my "competence." I guess it comes down to "what does a plant cost to build?" and I have absolutely no clue. I don't think that "sunny optimism" is always the best attitude in everything, like it's been for us in computers the last 50 years, but you don…

You are in good company, nobody has a clue what it is going to actually cost to build plants :-).
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