Earlier quoted context omitted.
In the German Alternativlos podcast the Wendelstein team (Prof. Dr. Thomas Klinger, Dr. Adrian von Stechow) recently stated that it is already feasible, they estimate a cost of ~€20B and a 5 year construction time for a commercial fusion power plant if we started now. https://alternativlos.org/51/
For less than 15 billion euro you could buy enough solar to power a country the size of the Netherlands. With 5 billion to spend on batteries you might even make it through night time usage. Or in other words: Fusion is too expensive at this point to be useful.
Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
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Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#32Earlier quoted context omitted.
In the German Alternativlos podcast the Wendelstein team (Prof. Dr. Thomas Klinger, Dr. Adrian von Stechow) recently stated that it is already feasible, they estimate a cost of ~€20B and a 5 year construction time for a commercial fusion power plant if we started now. https://alternativlos.org/51/
For less than 15 billion euro you could buy enough solar to power a country the size of the Netherlands. With 5 billion to spend on batteries you might even make it through night time usage. Or in other words: Fusion is too expensive at this point to be useful.
The first TVs were for the very rich, and had 4" bw screens. Now they're 80", thin, and insanely cheap.
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#33Earlier quoted context omitted.
Seconded. This is fascinating stuff and reminds me of some crazy rant some guy was telling me about anti-gravity and how electromagnetic “ribbons” could propel you. Obviously the guy was nuts, right? How would one go about learning more about electromagnetic plasma containment folding?
Haha, no I am just some random guy who reads too many Wikipedia articles. "Electromagnetic plasma containment folding" does sound like something a crazy person at a bus station would rant about. My explanation was definitely over simplified, but I'm not knowledgable enough to go into detail on the topic. I can't even point you towards something to read on the topic since everything I read about it is like 15 years ol…
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#34This is perhaps an obvious question to some, but I'll ask it anyway: How is the power generated here converted into usable electricity? I know for conventional fission reactors the heat of fission is basically used to run a steam turbine. Given the extreme heat of the plasma, and that it must be magnetically suspended so that it doesn't even touch the sides of the containment, how is that heat transferred to some oth…
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#35This is perhaps an obvious question to some, but I'll ask it anyway: How is the power generated here converted into usable electricity? I know for conventional fission reactors the heat of fission is basically used to run a steam turbine. Given the extreme heat of the plasma, and that it must be magnetically suspended so that it doesn't even touch the sides of the containment, how is that heat transferred to some oth…
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#36This is perhaps an obvious question to some, but I'll ask it anyway: How is the power generated here converted into usable electricity? I know for conventional fission reactors the heat of fission is basically used to run a steam turbine. Given the extreme heat of the plasma, and that it must be magnetically suspended so that it doesn't even touch the sides of the containment, how is that heat transferred to some oth…
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#37This is perhaps an obvious question to some, but I'll ask it anyway: How is the power generated here converted into usable electricity? I know for conventional fission reactors the heat of fission is basically used to run a steam turbine. Given the extreme heat of the plasma, and that it must be magnetically suspended so that it doesn't even touch the sides of the containment, how is that heat transferred to some oth…
For the German-speaking crowd here, the Alternativlos podcast guys were there twice and had lengtly conversations with the researchers there. Like, between nerds. Really cool, if you understand the language.
https://alternativlos.org/36/ (from 2016)
https://alternativlos.org/51/ (most recent, from may 2023)
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#38i’ve been following this project for 10 years. it’s been successful. but how do projects like these move faster? the wendelstein 7x is never going to generate usable electricity. it’s supposed to be the pre cursor to the producing reactor
Mostly, they don't? There should be more funding in this area, but at some point you've got to build it, and that takes a ton of time. Regulations/bureaucracy could be better but at the end of the day you're not going to cut off a ton of time safely. Once you have a working model iteration gets much much faster, but we've simply been hitting walls for decades.
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#39Speaking of fusion does anyone know what is going on with SPARC at Commonwealth Fusion Systems? I have been very excited about their system but they are understandably in a deep development and construction cycle after a $2B investment, so all their news page has for the last year are updated business deals and awards. I would love to hear how reactor construction is going.
Re: Wendelstein 7-X: Gigajoule energy turnover generated for eight minutes
#40Earlier quoted context omitted.
In the German Alternativlos podcast the Wendelstein team (Prof. Dr. Thomas Klinger, Dr. Adrian von Stechow) recently stated that it is already feasible, they estimate a cost of ~€20B and a 5 year construction time for a commercial fusion power plant if we started now. https://alternativlos.org/51/
For less than 15 billion euro you could buy enough solar to power a country the size of the Netherlands. With 5 billion to spend on batteries you might even make it through night time usage. Or in other words: Fusion is too expensive at this point to be useful.