Earlier quoted context omitted.
From 10% to 35% is a 25% improvement, you're still at 35%... From 70 to 95% is a 25% improvement, but it's a lot more. Going from 98 to 99% is only 1% but also like really a 10x improvment. Rockets are operating at pretty decent efficiency, 25% improvment on an internal combusion engine would be mind blowing and make EVs way less interetsting. There are theoretical maximum efficencies for various types of engines due…
Technically, from 10% of something to 35% of something is a 350% improvement or a 25 percent point improvement. https://en.wikipedia.org/wiki/Percentage_point
NASA validates revolutionary propulsion design for deep space missions
21–30 of 61 posts
Re: NASA validates revolutionary propulsion design for deep space missions
#22Earlier quoted context omitted.
Is that a 25% improvement in ISP/exhaust velocity or another metric?
It seems that 25% paragraph on wikipedia cites a non-technical article[1] from 2018: "Theoretical calculations have shown that detonation combustion is 25% more efficient than the isobaric combustion cycle, which corresponds to constant-pressure combustion, which is implemented in the chambers of of modern liquid propulsion engines." From another article[2] of the same year: "Conservatively speaking, a rotating deton…
The article you footnoted is also in Cyrillic.
After all this time, it's amazing to see people trust Wikipedia. It's like they don't care if it's true or not; it's entertainment, pretending to know, not knowledge.
A perfect way to spin your wheels forever and go nowhere.
Re: NASA validates revolutionary propulsion design for deep space missions
#23Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
Re: NASA validates revolutionary propulsion design for deep space missions
#24Earlier quoted context omitted.
Up to 25% improvement compared to conventional rocket engines according to the Wikipedia page. I haven’t found an actual ISP measurement for this NASA engine, though.
25% sounds super disappointing from a laymans perspective and not very "revolutionary" in the grand scheme of time and space. Can't wait until AI will be able to iterate advanced engineering designs in simulation space at incredible speed.
Re: NASA validates revolutionary propulsion design for deep space missions
#25Earlier quoted context omitted.
It seems that 25% paragraph on wikipedia cites a non-technical article[1] from 2018: "Theoretical calculations have shown that detonation combustion is 25% more efficient than the isobaric combustion cycle, which corresponds to constant-pressure combustion, which is implemented in the chambers of of modern liquid propulsion engines." From another article[2] of the same year: "Conservatively speaking, a rotating deton…
> that 25% paragraph on wikipedia cites a non-technical article[1] from 2018 The article you footnoted is also in Cyrillic. After all this time, it's amazing to see people trust Wikipedia. It's like they don't care if it's true or not; it's entertainment, pretending to know, not knowledge. A perfect way to spin your wheels forever and go nowhere.
And your comment is in Latin, going by your terminology. In the age of decent online translators, do you care to elaborate on why that’s a problem?
Re: NASA validates revolutionary propulsion design for deep space missions
#26What's up with all of these crazy technical developments after a period of relative stagnation? Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
Re: NASA validates revolutionary propulsion design for deep space missions
#27What's up with all of these crazy technical developments after a period of relative stagnation? Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
Re: NASA validates revolutionary propulsion design for deep space missions
#28What's up with all of these crazy technical developments after a period of relative stagnation? Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
Re: NASA validates revolutionary propulsion design for deep space missions
#29What's up with all of these crazy technical developments after a period of relative stagnation? Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
Re: NASA validates revolutionary propulsion design for deep space missions
#30What's up with all of these crazy technical developments after a period of relative stagnation? Aside from it being merely random or selection bias, it's plausible that there's some kind of AI assist beyond what we know happening behind the scenes.
i dont think thats plausible? we do not have AI