Earlier quoted context omitted.
From wikipedia [1]: >Atmospheric and gravity drag associated with launch typically adds 1.3–1.8 km/s to the launch vehicle delta-v required to reach normal LEO orbital velocity of around 7.8 km/s (28,080 km/h). So it'll help. Also significant is the ability to base out of an airport and launch closer to the equator. [1] https://en.wikipedia.org/wiki/Low_Earth_orbit
Combine that with the tyranny of the rocket equation and it becomes sensible.
Paul Allen's new rocket-launching plane
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Re: Paul Allen's new rocket-launching plane
#32Earlier quoted context omitted.
The less air you are pushing the cheaper it is to achieve that delta-V
Is it really that dramatic a difference? I suppose it must be, if they're building it, but it's strange that no one has done this before if it really helps.
As others noted, this has been done before, but it's not too common. I think that's mainly because rockets need to be really, really big to get a decent-sized payload to orbit. Launching from an aircraft would let them be a bit smaller, but they still need to be huge. Pegasus (the one currently in use) is a small rocket and can only orbit a small payload. This plane is designed to carry about 500,000lbs of rocket. For comparison, a fully loaded Falcon 9 is about 1.2 million pounds, and that's only a medium-sized rocket when it comes to orbital launchers.
Amusing aside: in the 1970s, the US Air Force tested the feasibility of air-launching ICBMs. The test was carried out by loading a Minuteman ICBM into a C-5 Galaxy transport, flying it over the ocean, and then essentially shoving the missile out the back door and lighting it up. In this case, the advantage wasn't efficiency or payload, but rather the ability to move ICBMs around to make it more difficult to destroy them in a first strike. They decided it wasn't worth all the trouble in the end.
Re: Paul Allen's new rocket-launching plane
#33IANARS but this plane should give the remaining stage(s) four advantages: 1. +230m/s orbital velocity [1] 2. +9km launch altitude [1] 3. can launch in more weather conditions 4. 1st stage can abort mid-launch without loss of payload. Of these, the most important is the increase in launch altitude, because that means stage 2 launches in air of greatly decreased density, leading to the following efficiencies: A. a vacu…
Re: Paul Allen's new rocket-launching plane
#34I'm confused as to what this thing can accomplish. It can probably fly very high, but I assume it can't fly very fast (relative to orbital speed), and I thought the overwhelming majority of the delta-V to get something into orbit was for forward momentum and that just launching from higher up wouldn't help much. Clearly there's something I'm missing here (or they wouldn't have built it), can anyone fill me in?
From wikipedia [1]: >Atmospheric and gravity drag associated with launch typically adds 1.3–1.8 km/s to the launch vehicle delta-v required to reach normal LEO orbital velocity of around 7.8 km/s (28,080 km/h). So it'll help. Also significant is the ability to base out of an airport and launch closer to the equator. [1] https://en.wikipedia.org/wiki/Low_Earth_orbit
[1] https://forum.nasaspaceflight.com/index.php?topic=9959.msg18...
Re: Paul Allen's new rocket-launching plane
#35Re: Paul Allen's new rocket-launching plane
#36I'm confused as to what this thing can accomplish. It can probably fly very high, but I assume it can't fly very fast (relative to orbital speed), and I thought the overwhelming majority of the delta-V to get something into orbit was for forward momentum and that just launching from higher up wouldn't help much. Clearly there's something I'm missing here (or they wouldn't have built it), can anyone fill me in?
Look at this analysis of the Falcon 9 flight profile, in particular the graph at the bottom right: https://www.reddit.com/r/spacex/comments/6303ko/falcon_9_ful... The majority of the horizontal delta-V is produced in the second stage. The job of the first stage is to a large extent just to lift the second stage out of the densest part of the atmosphere, to minimize drag for the second stage. A plane can do the same t…
Re: Paul Allen's new rocket-launching plane
#37Dumb question: why don't they launch rockets from the tops of mountains?
It's prohibitively expensive and logistically challenging to build on a mountain, and mountains on Earth don't go nearly as high as planes can.
Re: Paul Allen's new rocket-launching plane
#38Dumb question: why don't they launch rockets from the tops of mountains?
Re: Paul Allen's new rocket-launching plane
#39Dumb question: why don't they launch rockets from the tops of mountains?
Re: Paul Allen's new rocket-launching plane
#40Dumb question: why don't they launch rockets from the tops of mountains?