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Starcloud

blogs.nvidia.com

1–10 of 234 posts

Re: Starcloud

#2
I though that refrigerating things in space was using a lot of energy because heat cannot dissipate in the void of space.

Moreover, why are the energy cost 10x lower when in space you have unlimited access to sun power? Is it the cost of building the energy production infrastructure ?

Re: Starcloud

#3
Last time these folks were mentioned on HN, there was a lot of skepticism that this is really possible to do. The issue is cooling: in space, you can't rely on convection or conduction to do passive cooling, so you can only radiate away heat. However, the radiator would need to be several kilometers big to provide enough cooling, and obviously launching such a large object into space would therefore eat up any cost savings from the "free" solar power.

More discussion: https://news.ycombinator.com/item?id=43977188

Re: Starcloud

#5
post #2

I though that refrigerating things in space was using a lot of energy because heat cannot dissipate in the void of space. Moreover, why are the energy cost 10x lower when in space you have unlimited access to sun power? Is it the cost of building the energy production infrastructure ?

and what about solar storms...

Re: Starcloud

#6
Uhm, isn't radiation a problem outside of the atmosphere? How fast are the data transfers going to be? so many questions...

Re: Starcloud

#8
post #3

Last time these folks were mentioned on HN, there was a lot of skepticism that this is really possible to do. The issue is cooling: in space, you can't rely on convection or conduction to do passive cooling, so you can only radiate away heat. However, the radiator would need to be several kilometers big to provide enough cooling, and obviously launching such a large object into space would therefore eat up any cost s…

Their website pitches it as 16 square km

Re: Starcloud

#10
post #3

Last time these folks were mentioned on HN, there was a lot of skepticism that this is really possible to do. The issue is cooling: in space, you can't rely on convection or conduction to do passive cooling, so you can only radiate away heat. However, the radiator would need to be several kilometers big to provide enough cooling, and obviously launching such a large object into space would therefore eat up any cost s…

Their white paper touches on the issue, which seems slightly hand-wavy without much detail on quantification. They could potentially take advantage of heat gradients from deep space and dissipate heat to explore the Seeback effect.
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