I thought that was the bigger reason for the retro rockets.
I thought that was the bigger reason for the retro rockets.
https://www.space.com/16878-mars-rover-landing-sky-crane-gui...
It takes takes ~6.400 m/s of dV to slow down, and do a powered landing on Mars.
Thanks to the tyranny of the rocket equation, it takes ~5x more fuel to do a powered landing on Mars, than it does on the Moon. For the entire mission. That's five Saturn V rockets, if you want to get a similar payload to Mars and back.
Shaving most of the dV requirements of the 'land on Mars' leg of the journey will reduce that requirement, from ~5x to ~2x.
With generous reserves, I guess. The speed on a low Moon orbit is about 1700 m/s, Apollo's LEMs had about (less than?) 2500 m/s delta-V for landing.
> It takes takes ~6.400 m/s of dV to slow down, and do a powered landing on Mars.
Seems too generous. Escape velocity for Mars is 5.027 km/s, so low orbital speed is about 3.6 km/s; more importantly, there is atmosphere - which maybe too thin to land safely on parachutes, but it definitely is going to reduce speed from orbital to some extent.
The falcon heavy and dragon were almost definitely up to the task, given that SpaceX was for a short period of time actively looking for customers.
Source on the 99.9% is this talk (about starship, but I doubt red dragon would have been substantially different in terms of delta v): https://www.youtube.com/watch?v=bysu8XN5OfY
A capsule doing a simpler landing generally needs to get rid of about 400m/s using other methods, based on NASA's past missions.