New Material Breaks World Record Turning Heat into Electricity
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Re: New Material Breaks World Record Turning Heat into Electricity
#2Re: New Material Breaks World Record Turning Heat into Electricity
#3Re: New Material Breaks World Record Turning Heat into Electricity
#4Could this also be used to reverse electricity into cold-heat gradient with high efficiency?
Re: New Material Breaks World Record Turning Heat into Electricity
#5Could this also be used to reverse electricity into cold-heat gradient with high efficiency?
Re: New Material Breaks World Record Turning Heat into Electricity
#6Could this also be used to reverse electricity into cold-heat gradient with high efficiency?
Re: New Material Breaks World Record Turning Heat into Electricity
#7The idea that the crystalline structure plays a large role in the bulk thermal conductivity of the material is kind of mind-blowing at first and then retrospectively obvious.
Re: New Material Breaks World Record Turning Heat into Electricity
#8This would be an even bigger deal for remote spacecraft that rely on the heat from on-board nuclear reactors.
Re: New Material Breaks World Record Turning Heat into Electricity
#9Re: New Material Breaks World Record Turning Heat into Electricity
#10Could this also be used to reverse electricity into cold-heat gradient with high efficiency?
If you have a very small cooling job, yes. Anything above a handful of thermal watts is still better off using a compressor.
So now you’ve got a very thin chip and all the power comes in on the side with pretty much nothing else on it. I wonder if you mount the chip backside up, put these little peltier devices on the hot spots, if you can maintain a higher heat transfer rate.