There's some pretty fundamental problems with spin launch. Atmospheric drag is greatest at sea level, and drops as altitude increases. A traditional lift vehicle is traveling slowest during the early parts of its ascent, and starts reaching high velocity once it's cleared the thicker parts of the atmosphere. In contrast, spin launch is at its highest velocity (before the rocket engine ignites) right after it's releas…
Giant catapult sends satellites into space
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Re: Giant catapult sends satellites into space
#32Re: Giant catapult sends satellites into space
#33Re: Giant catapult sends satellites into space
#34Accelerating in a huge vacuum chamber seems pretty difficult to achieve, and wouldn't there be a huge shock to the vehicle as it hits a wall of dense air? How much of a difference would a low pressure chamber make, I wonder? Maybe you could build the circular accelerator then a much longer exit pipe that runs up the side of a mountain. Although that sounds way, way easier said than done! But if your exit air pressure…
Well actually.... Even if you place the exit at higher altitude with lower pressure, without a seal you'll still end up with higher pressure at the base. Just like you do in open air, the weight of the air column pushing down increases the pressure.
If the launch vehicle can accelerate well enough in low pressure instead of vacuum then maybe you could "just in time" depressurize segments of the tube. Although that's still getting perilously close to the magical airlock concept.
Apologies for rambling, this is fascinating.
Re: Giant catapult sends satellites into space
#35Re: Giant catapult sends satellites into space
#36There's some pretty fundamental problems with spin launch. Atmospheric drag is greatest at sea level, and drops as altitude increases. A traditional lift vehicle is traveling slowest during the early parts of its ascent, and starts reaching high velocity once it's cleared the thicker parts of the atmosphere. In contrast, spin launch is at its highest velocity (before the rocket engine ignites) right after it's releas…
I just don't see this happening tbh.
Besides, with spacex and reusability launch capacity is already more available and cheap enough than humanity needs.
Re: Giant catapult sends satellites into space
#37From what I can tell looking at SpinLaunch's website and web search, they were founded in 2014, "launched" a couple projectiles in atmosphere, had a leadership change in 2022, and have been pretty quiet since then. Unless I've missed something, the headline "Giant catapult sends satellites into space" is not true. To date, they have not put anything into orbit and the company appears to be on life support.
From what I could find they have only reached 1/10th of the Karman line. I also think its a red flag that they do not have actual press releases or data, just a list of any random website that wrote a story about them.
This might be useful if there were space stations that needed large, frequent deliveries of fuel, air, and water.
[1] https://thespacebucket.com/what-happened-to-spinlaunch-its-p...
Re: Giant catapult sends satellites into space
#38There's some pretty fundamental problems with spin launch. Atmospheric drag is greatest at sea level, and drops as altitude increases. A traditional lift vehicle is traveling slowest during the early parts of its ascent, and starts reaching high velocity once it's cleared the thicker parts of the atmosphere. In contrast, spin launch is at its highest velocity (before the rocket engine ignites) right after it's releas…
I wonder what would be the technical challenges of a railgun powered rocket/capsule to launch small payloads to space, technically the remaining concern would be the G force from the acceleration.
Basically even if you build a suitably large one, you might get as few as 1 shots from the structure before having to replace the entire rail.
Re: Giant catapult sends satellites into space
#39There's some pretty fundamental problems with spin launch. Atmospheric drag is greatest at sea level, and drops as altitude increases. A traditional lift vehicle is traveling slowest during the early parts of its ascent, and starts reaching high velocity once it's cleared the thicker parts of the atmosphere. In contrast, spin launch is at its highest velocity (before the rocket engine ignites) right after it's releas…
I don't see how this will work. You need to launch through the entire atmosphere and still end up with orbital velocity. The only acceleration happens at the beginning so you must launch at speeds much higher than orbital speeds. Which in turn means heating will be insanely high as your highest speed is going to be at the highest drag. The satellite will heat up a lot more than one simply re-entering. Meaning a total…
Re: Giant catapult sends satellites into space
#40Somehow it’s hard to believe that the lower dense part of the atmosphere doesn’t slow it down or even burn it. It happens when these things fall down… why not when going up?