Starship is doing fantastic. SpaceX's rate of development is unprecedented compared to any other aerospace company. Blue Origin was formed before SpaceX and yet BO has still not achieved orbit. Not once. Their alleged New Glenn will not fly until 2022 for no good reason.
Elon Musk is without peer. He is our premier genius.
Berger isn't just some guy; he's literally written the book on SpaceX. Perhaps this is a case of the headline being written by the editor, not the author...
Headline is really bad, and doesn't particularly match the rest of the article. Although even the article questions whether the number of explosions here are too much to win large contract coming up soon. Since the contract is political, it's possible, although if I had to pick a rocket to ride on next year, I'd pick Starship over New Glenn or SLS at this point.
Terrible article imho. Low effort on the research, the only negative (presumably the basis of the question in the title): "maybe NASA wont like prototyping?"
I just don't see how this thing will ever carry humans. They can get to the point where it is perfectly nailing 100/100 landings every time without fail and it still wont be safe. One single gust of wind at the wrong time, and everyone is dead. No go-arounds, no ejection system, no aerodynamic ability to correct. Starship can potentially revolutionize cargo access to space, but there's nothing in the history of aerospace travel even remotely comparable to the level of risk this would be taking on.
The space shuttle landed aerodynamically. Starship would be taking on the same risk profile of a launch system with no escape mechanism, and reentry based on ablative tiles, without the one redeeming feature the shuttle did have which is the ability to control its' own descent unpowered and select a suitable landing site.
Once you deorbit you select between one target landing strip and lithobraking.
Starship could conceivably land on anything reasonably flat if it needs to land in an emergency compared to Super long special runway the Shuttle needed.
+ both space shuttle crashes should not have happened. There were people involved in both circumstances ringing the alarm bell and warning of the likelihood of the outcome. Those were not failure of technology, they were failure of culture and courage (though in the case of Columbia, I'm not sure what the rescue plan would have been).
given the inherent danger of space travel, I don't think the risk will ever meet parity with air travel.
Planes glide, and are generally only unsafe during a few critical moments after tire-lift.
Planes that don't glide are generally considered unsafe and highly specialized.
I fail to wrap my head around how a mechanism that uses active propulsion for all phases of flight could ever match the safety of a mechanism that exploits passive physics in the face of active propulsion system-failure.
That said, I couldn't tell you how to achieve space-flight otherwise except for maybe a shuttle-lander type system -- I am simply stating that the comparison of risk between air travel and space travel seems absurd to me.
Everything is harder or more dangerous that's not been done. Otherwsie it would have been already, right?
I get your point but things become normalised over time and mechanisms/technology invented to deal with the risk and conditions. If you'd said to people 150 years ago that there would be (well pre-covid days) at any one time about a million people at 30k feet flying around in basically a tin can, journeying across the world in a day, they'd say you're mad and it's too dangerous to achieve. They didn't have the technology capable, like a jet engine or fabrication techniques. Maybe in 50 years we do have a new technology that meets the crtieria needed, maybe not, but the same happened before and I'm sure it'll happen again.
"Modern rockets originated in 1926 when Goddard attached a supersonic (de Laval) nozzle to a high pressure combustion chamber"
So, rockets have had almost a century of development too. You could even stretch that and claim more like 6-700 years, as the Chinese had "one of the world's earliest multistage rockets and ballistic cruise missiles" around the 14th century: https://en.wikipedia.org/wiki/Huolongchushui
The rate of 1/10,000,000 is for commercial regular aviation. Private fights have a much larger rate, usually even larger than 1/1,000,000, what is a normal rate for civilian transportation (a few times more or less).
Space fight is a lot more dangerous than normal in-planet transportation, and the Space Shuttle is on the more risk side of it (but any project has too small numbers to generalize).
From this latest test, it looked like SpaceX shared the concern, and took steps to address it. It was less "last-second hover-slam" and more "we'll flip, hover, and touch down gently".
With production legs instead of the tiny stubby test ones, I suspect it'd have worked.
They said if a human went over 40mph they would be torn apart, when locomotives were invented and I'm sure there were similar comments about the Wright Brother's at the time they showed the world their crazy invention that would never be able to carry humans safely.
Assuming they have enough fuel margin they could probably just fly back up a few meters and try again in the rare case of an unexpected event causing an imperfect landing approach. Doesn't seem much worse than a helicopter in that regard.
I agree it'll probably be quite a while before they reach that level of safety though. This is brand new technology, and it's not going to reach the level of reliability of traditional aircraft without decades of experience with different failure modes and techniques for mitigating them.
Space Shuttle had no go around after the deorbit burn - you either land on the runway or ditch somewhere close to it (and ditching is kinda hard to do when landing not on the Cape but in the New Mexico desert).
Unlike the Soviet Buran Shuttle, there was no option to install an auxiliary jet engine and you had to be a very good pilot to compensate for the Shuttles brick like gliding qualities.
Since the moon lander version has high-mounted Dracos to touch down without kicking up dust, would it be possible for Earth Starship to incorporate a similar design as a backup landing system?
You'd need substantially more of them in Earth's gravity, and they're not going to save you from an explosion unless you make the crew capsule detachable.
The flip-and-land maneuver doesn't permit much "uh oh, it's gone wrong..." time to correct, either. I think they're going to have to go more in the direction of airliner-style "look, things kinda have to work" - there's no ejection seat, no parachute.
No way in hell a single gust of wind is going to be a problem - this thing is HEAVY even at landing and even then the raptors are powerful enough to not just slow it down to effectively hover but also flip it from horizontal to vertical in seconds. Unless you are insane enough to land into a Typhoon wind should not be a problem at all.
These are just filler articles, guys. I used to write nonsense like this as a teenager for a living. You kind of want just some base load of published content on your website so you hire some cheap labour to do it.
Occasionally someone gets upset about it and shares it. Didn't happen that much in the past but happens more commonly now.
It has all the signs:
* No meaningful information
* Filler phrases to pad content
* Some amusement for the writer with some phrasing
Anyone reading anything into this is kind of wasting their time but it's okay, it's kinda designed for that.
One of the sad things about the modern ad-supported internet economy, is that respected veteran journalists are under pressure to produce the same sort of filler content that is little distinguishable from the output of low-paid freelance content writers.
Berger is very smart, and he literally just published a (good) book about SpaceX. A layperson reading the article without background knowledge would have those questions. So he, as a journalist, posed them, and then answered them (fairly, which turns out to be almost entirely in SpaceX’s favor).
It's for people who do believe that 3 explosion's show trouble. Autor first "agrees" with that, and then explains why it doesn't matter, and SpacX is doing thing right.
It's long form of "Yeah good point , but how about ..."
You say it's a dumb question to ask, yet you still deemed necessary to include in your own statement facts such as that these are "very early test launches" and that "so much went right".
If it's so dumb for anyone to even ask if three explosions is a problem, why did you do this? Why didn't you just write "Asking if three explosions is a problem is a dumb question to even ask."? Why was it necessary to introduce supporting evidence?
Could it be that you think it's a dumb question because you know these facts? And the article author's job, as a journalist, is to assume, accurately, that most people don't know these facts. Most people are not SpaceX super-fans who have been closely following the test programme. Many will just hear "SpaceX blew up a third rocket" and wonder if things are going wrong, and the author's job, as a professional journalist is to inform those people.
I know that literally every publication in the world could be hysterically writing about how it will never work and how bad a business it is and how irresponsible Elon is, about how we should be fixing the earth not going to Mars, and it just doesn't matter.
They'll just do it.
We'll be in space, on the moon, and at Mars at some point within 50 years at the worst IMO.
They ought to be in the dictionary for ignore the haters.
Most of what I know about Elon Musk comes from a biography of his life I read. It, perhaps appropriately, ends with some (fair) doubts about SpaceX's ability to do verticle landings and create reusable rockets. We know how that ended.
He also made electric vehicles something people wanted for the first time. Tesla accomplished this is an environment that was very negative towards electric vehicles in general probably thanks to the existing auto industry along with the fossil fuel industry.
I liked this article because it echoes some of the questions my non-technical friends ask me when I'm bullish on SpaceX and Starship.
There are huge unknowns here still. Perhaps the largest one is whether or not they will be able to solve the reentry heat shield problem. They don't really have enough fuel reserve to to decelerate, and their ceramic tiles (like most tiles) are brittle so you can't put them edge to edge without having the expansion/contraction of the underlying rocket damage them. That means a design that is both effective at shielding the rocket from the plasma of re-entry, while adjusting to different expansion coefficients.
There was a LOT of engineering work on the shuttle with this issue which lead to the very complex and difficult to refurbish system that the shuttle ended up with.
If you can refuel in orbit, not a problem as you could use propulsive descent all the way and keep your velocity low enough to avoid the heating issues. Not the case here.
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[ 5.0 ms ] story [ 118 ms ] threadElon Musk is without peer. He is our premier genius.
The mindset of "experiments aren't a failure if we learned something" seems to be eluding yet another commentator.
To be fair, it also seems to elude most of academic publishing.
There's very little risk if you never leave the ground.
The space shuttle?
The space shuttle landed aerodynamically. Starship would be taking on the same risk profile of a launch system with no escape mechanism, and reentry based on ablative tiles, without the one redeeming feature the shuttle did have which is the ability to control its' own descent unpowered and select a suitable landing site.
Starship could conceivably land on anything reasonably flat if it needs to land in an emergency compared to Super long special runway the Shuttle needed.
By contrast you have a fatal airplane crash in the order of 10,000,000s flights.
Planes glide, and are generally only unsafe during a few critical moments after tire-lift.
Planes that don't glide are generally considered unsafe and highly specialized.
I fail to wrap my head around how a mechanism that uses active propulsion for all phases of flight could ever match the safety of a mechanism that exploits passive physics in the face of active propulsion system-failure.
That said, I couldn't tell you how to achieve space-flight otherwise except for maybe a shuttle-lander type system -- I am simply stating that the comparison of risk between air travel and space travel seems absurd to me.
Of course space travel would be more dangerous.
I get your point but things become normalised over time and mechanisms/technology invented to deal with the risk and conditions. If you'd said to people 150 years ago that there would be (well pre-covid days) at any one time about a million people at 30k feet flying around in basically a tin can, journeying across the world in a day, they'd say you're mad and it's too dangerous to achieve. They didn't have the technology capable, like a jet engine or fabrication techniques. Maybe in 50 years we do have a new technology that meets the crtieria needed, maybe not, but the same happened before and I'm sure it'll happen again.
So, rockets have had almost a century of development too. You could even stretch that and claim more like 6-700 years, as the Chinese had "one of the world's earliest multistage rockets and ballistic cruise missiles" around the 14th century: https://en.wikipedia.org/wiki/Huolongchushui
Space fight is a lot more dangerous than normal in-planet transportation, and the Space Shuttle is on the more risk side of it (but any project has too small numbers to generalize).
With production legs instead of the tiny stubby test ones, I suspect it'd have worked.
I believe they can just burn extra fuel margin to do a traditional vertical landing though. It costs payload, but it should be doable.
When maximizing cargo delivery to the surface of Mars, I'm sure they'll always do the flip.
I agree it'll probably be quite a while before they reach that level of safety though. This is brand new technology, and it's not going to reach the level of reliability of traditional aircraft without decades of experience with different failure modes and techniques for mitigating them.
State of the art right now is capsules that rely on parachutes that have no go-arounds, no ejection seats and no aerodynamic ability to correct.
edit: And the Space Shuttle which had go-around and aerodynamic ability to correct was even LESS safe than capsules.
Starship actually _could_ have go-arounds, depending on how much fuel margin they have available.
Unlike the Soviet Buran Shuttle, there was no option to install an auxiliary jet engine and you had to be a very good pilot to compensate for the Shuttles brick like gliding qualities.
The flip-and-land maneuver doesn't permit much "uh oh, it's gone wrong..." time to correct, either. I think they're going to have to go more in the direction of airliner-style "look, things kinda have to work" - there's no ejection seat, no parachute.
If humans were involved in the landing I think the design would be significantly different.
Occasionally someone gets upset about it and shares it. Didn't happen that much in the past but happens more commonly now.
It has all the signs:
* No meaningful information
* Filler phrases to pad content
* Some amusement for the writer with some phrasing
Anyone reading anything into this is kind of wasting their time but it's okay, it's kinda designed for that.
He's just released a book on the early days of SpaceX [1] that appears to be the definitive account, according to the early reviews.
I'm not associated, but I have been wanting to read his book and am happy it has finally been released! :)
[1] https://www.amazon.com/Liftoff-Desperate-Early-Launched-Spac...
[2] https://twitter.com/SciGuySpace
This is the dumbest statement I've read so far about Starship.
Or alternativatly, it's deliberate sensationalism and clickbait.
It's for people who do believe that 3 explosion's show trouble. Autor first "agrees" with that, and then explains why it doesn't matter, and SpacX is doing thing right.
It's long form of "Yeah good point , but how about ..."
If it's so dumb for anyone to even ask if three explosions is a problem, why did you do this? Why didn't you just write "Asking if three explosions is a problem is a dumb question to even ask."? Why was it necessary to introduce supporting evidence?
Could it be that you think it's a dumb question because you know these facts? And the article author's job, as a journalist, is to assume, accurately, that most people don't know these facts. Most people are not SpaceX super-fans who have been closely following the test programme. Many will just hear "SpaceX blew up a third rocket" and wonder if things are going wrong, and the author's job, as a professional journalist is to inform those people.
"Hard to ignore" is not the same as "bad", as the rest of the article makes clear.
I know that literally every publication in the world could be hysterically writing about how it will never work and how bad a business it is and how irresponsible Elon is, about how we should be fixing the earth not going to Mars, and it just doesn't matter.
They'll just do it.
We'll be in space, on the moon, and at Mars at some point within 50 years at the worst IMO.
They ought to be in the dictionary for ignore the haters.
There are huge unknowns here still. Perhaps the largest one is whether or not they will be able to solve the reentry heat shield problem. They don't really have enough fuel reserve to to decelerate, and their ceramic tiles (like most tiles) are brittle so you can't put them edge to edge without having the expansion/contraction of the underlying rocket damage them. That means a design that is both effective at shielding the rocket from the plasma of re-entry, while adjusting to different expansion coefficients.
There was a LOT of engineering work on the shuttle with this issue which lead to the very complex and difficult to refurbish system that the shuttle ended up with.
If you can refuel in orbit, not a problem as you could use propulsive descent all the way and keep your velocity low enough to avoid the heating issues. Not the case here.