Difference between revisions of "RA2lover"
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| + | Nice work on the IC10 Parameters in the highlighting module. I was planning on having a look in the game files to see if I could find them all, but you beat me to it! [[User:TK421|TK421]] ([[User talk:TK421|talk]]) 01:42, 22 February 2026 (CST) | ||
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Hey, thanks for taking the time to write to me. I appreciate this info very much. | Hey, thanks for taking the time to write to me. I appreciate this info very much. | ||
Revision as of 01:42, 22 February 2026
Nice work on the IC10 Parameters in the highlighting module. I was planning on having a look in the game files to see if I could find them all, but you beat me to it! TK421 (talk) 01:42, 22 February 2026 (CST)
Hey, thanks for taking the time to write to me. I appreciate this info very much.
"Is the PFGE max thrust figure obtained from running both inputs with premixed 60.7MPa fuel at 196 K?"
Yes, that is exactly what I did with Volatile/O2 mix. I didn't try testing it with N2O mix since it seemed convoluted, so I didn't update that value. Though at this point I have a better understanding of how to get it to work, so I might just test that for the sake of getting it on record.
"You can add up to 0.05 mol/L of frozen gases or liquids to a pipe network before it starts taking damage and i wonder if adding ~0.134% of frozen liquid nitrous oxide is enough to get another 100-200N of thrust."
Oh, that's very neat. I didn't know about this limit. So it would be a fuel mix with a tiny superfuel boost. Not practical, but kinda cool. I'll probably try it out before building an N2O PFGE.
And thanks for the coefficients. I saw someone posted them on Reddit, but this list is more comprehensive. I noticed that the 6.3 kPA min and 6000 kPA max defines the minimum and maximum liquid temperatures for some substances, but not others like CO2, N2O, and pollutants. Are those limits defined by the wiki values, or is there something more going on?
"Also, note frozen liquids linearly interpolate their evaporation pressures from their freezing point values at their freezing temperature down to 6.3 kPa at half their freezing temperature, see [1]. I'm not sure if there's an application where this is useful(open-cycle pollutant evaporation chamber for liquid oxygen?), but it's there"
Huh, so the phase change diagrams showing a vertical line aren't exactly accurate, then? Technically it should be a slope? Weird.
