I thought the stellerator had already achieved 100M Kelvin?
Chinese Tokamak reaches over 100M degrees
151–160 of 240 posts
Re: Chinese Tokamak reaches over 100M degrees
#152Earlier quoted context omitted.
If global warming will be more significant then is predicted now I believe they will suddenly invest 100x more into this technology. This and nuclear plants are only reasonable way how to have available energy for some 'CO2 removal' projects...
Is money more limiting than time though? Nine woman and a child analogy comes to mind.
Re: Chinese Tokamak reaches over 100M degrees
#153If you added one gram of 100M degree material in a 5 sq meter room at 15 degrees C, how hot would the room get?
Re: Chinese Tokamak reaches over 100M degrees
#154If you added one gram of 100M degree material in a 5 sq meter room at 15 degrees C, how hot would the room get?
Re: Chinese Tokamak reaches over 100M degrees
#155Earlier quoted context omitted.
Well, there is almost certainly somebody that read the number and thought about Fahrenheit.
Do scientists use farenheit? Genuine question
Re: Chinese Tokamak reaches over 100M degrees
#156Earlier quoted context omitted.
> "100M degrees" (Kelvin) Off topic, but this distinction made me laugh. Like the difference between Kelvin and Celsius would throw everything off.
I remember seeing an infografic a while ago where some very high temperature of like 10 million Kelvins was displayed like "9999728 degrees". I thought it was mildly amusing.
Re: Chinese Tokamak reaches over 100M degrees
#157Is it just me, or have we converged on 1 reactor design (the tokamak) relatively early on in the process? I appreciate that funds need to be concentrated in order to have an impact, but we have built dozens of this design since the 1950s, yet here we are.
Wendelstein 7-X in Germany is a stellarator-type reactor: https://en.wikipedia.org/wiki/Wendelstein_7-X
>The ARC design aims to achieve an engineering gain of three (to produce three times the electricity required to operate the machine) while being about half the diameter of the ITER reactor and cheaper to construct. (Wikipedia)
It's not been built because of the $5bn or so cost, though given global warming / saving the planet type issues I'd be happy enough as a tax payer to have governments fund one and maybe knock 1% off the defence budget to counter that. It'd probably do more for world peace than churning out some more f35s.
Re: Chinese Tokamak reaches over 100M degrees
#158Stories like this scare me. With all of the precautions, even things like Fukushima failed and will poison our ocean for millennia. What happens if we have a runaway fusion process through some pathway that was unexpected? With all the talk about the LHC possibly producing mini blackholes or magnetic monopoles that could potentially cause protons to decay spontaneously, I don't have enough nuclear physics background…
Re: Chinese Tokamak reaches over 100M degrees
#159Earlier quoted context omitted.
Didn't old-school CRT televisions "heat" electrons to more than 10KeV?
I don't know about CRT's but 10KeV is not particularly energetic. A CT unit may operate in the ~100-200kV range (so max energy of 200keV) while radiation therapy units operate in 6MV-18MV range (so electron accelerated up to 18x10^6 eV). I don't know much about fusion, but my guess is the 10keV is impressive because it is a self-sustaining fusion reaction rather than being impressive because of the absolute energy of…
Right, and that was my understanding. It's easy to accelerate a particle or a stream of them to high energy. It's another thing entirely to contain a gas/plasma at those energies. The distinction becomes more obvious when they flip back and forth between impressive sounding temperatures and simple KeV measures.