Designing a Full-Time Human Habitat on the Moon
citylab.com
citylab.com
The old economies were driven by commodities. Ours is driven by attention. How might we build a multi-billion dollar media property on the moon?
Outside with propulsion would be actually quite dangerous in comparison.
Ooh, really? Well, that sounds interesting; just how dangerous would you say it is, compared to motorcycling, or free-climbing?
You need a fullbody suit to maintain it's integrity, so taking even a minor spill is not a good idea. There's no terminal velocity either so if you go up a reasonable amount and lose power you'd make a visible crater. You just keep speeding up until reaching the moon's escape velocity (2.4km/s)
Of course the government could pour massive resources into it to see what happens, but we aren't really at the point economically or technologically where that makes sense, at least in my arrogant opinion.
Seems like we should achieve ISRU with robots before we waste a lot of money to send people.
And the early colonies were plenty underplanned and disastrous.
Also, that's what my second paragraph is about. Given our current resources and capability, an experimental colony is a fool's errand.
None of that would apply to a colony on the Moon: surviving there would require advanced technology, and we don't know if it's even possible for humans to survive in such low gravity for an extended period. A colony would probably remain dependent on Earth to supply manufactured products, such as semiconductors. Modern society uses a vast range of products. It probably wouldn't be much more self-sufficient than the ISS, and it wouldn't survive if Earth lost interest in supporting it.
The only thing the moon has going for it is the apparent absence of microorganisms that cause human disease.
Maybe we need to go down before we go up. Maybe we need to survive at a few meters below sea level before we can handle living at a few kilometers above it.
There's plenty of 3D space available at the surface of the Earth; it's not exploited either because it's not profitable or because government rules prevent it. Who wants to live in a desert in the middle of nowhere? But they want to live on Mars? It would get old fast, especially with such a laggy Internet connection.
On top of that, the only problem left to solve was range of movement, in terms of thousands of miles and months at sea, using proven technology, typically utilized not too far from a coast with a known port. Diseases, hostile locals and natives, food supply, the return trip, all were considered otherwise negotiable concerns.
The moon, on the other hand, comes with at least two major problems:
1. Extended side effects of long term exposure to low gravity, within the context of human health.
2. Sustained self sufficiency for resource usage, and sociological organization of an encapsulated non-terrestrial community, with no regimented military context.
So, what would the age of exploration look like, if you were to add those two problems onto the problems already faced?
I'd also expect biology research to start to change this calculus before physics research does, as we are likely to be able to engineer humans to put up with low gravity environments sooner than we will be able to engineer a gravity field.
EDIT: Honestly if someone is downvoting me because I mentioned Trump in a non-partisan fashion, that's rather petty.
From what I understand, the amount of stuff rockets carry into literally every layer of the atmosphere is already concerning. If someone can put my mind at ease with a paper not written by Big Rocket I'd be all the happier. ;)
Not an expert, but I believe the Saturn moon rockets did run on hydrogen, so there should not have been much pollution. The falcon-9 though runs on RP-1, refined kerosine.
Too volatile to handle?
https://en.wikipedia.org/wiki/Delta_IV_Heavy
Hydrogen offers excellent ISP but poor volumetric energy density, and it needs to stay much colder than oxygen to remain liquid. Fuel tanks for containing hydrogen tend to be more complicated and larger than those for other liquid rocket fuels. Upper stages see more relative benefit from the higher performance achievable with hydrogen fuel. The cost:benefit comparison has led to most rockets not using hydrogen for the first stage.
But I assume
"The cost:benefit comparison has led to most rockets not using hydrogen for the first stage."
nobody factored in the long term climate cost with kerosine. But since most hydrogen is generated with fossils, it might not make a big difference right now.
https://www.goodreads.com/book/show/1005249.Welcome_to_Moon_...
I can't find a picture of it now (aside - in 2019 I actually find it surprising when I cant find a picture of something I remember) but there was a thrilling section about how tourists at Moonbase could fly inside the low-gravity / cavernous pressurized living quarters by donning large mylar wings.
That's from "The Menace from Earth", by Heinlein.[1]
[1] https://www.baen.com/Chapters/0743498747/0743498747___2.htm
Aren't the areas around the equator much easier to reach, in terms of delta v?
surely this is an opportunity to build stunning gothic 3d-printed procedurally generated fractal moon cities
'Carbon content and degassing history of the lunar volcanic glasses' - https://www.nature.com/articles/ngeo2511
EDIT: This is a perfectly valid reply to the lack of carbon asserted by the parent comment. If it's not there, we put it there. How hard is that to comprehend? Space stations and various materials requisite to the operation of space stations didn't exist in orbit prior to us putting them there.
People could change nature with technology i think, and it's an unnatural thing to the universe.