This because Breguet range equation assumes steady level flight (trimmed). So SFC in that equation should be whatever SFC is needed to produce the thrust needed to balance out the drag at your cruise condition.Engine thrust doesn't actually enter into the equation at all. At least not in the calculator I used.
You wouldn’t go without an afterburner because not having one will significantly increase the TOFL required to operate the aircraft; especially at full combat load. Whatever your max dry thrust and dry T/W ratio is, afterburners will increase that and shorten your TOFL. Seeing how basing option and ACE is at the top of wargame planners mind these days, I’m willing to bet that you will have an afterburner even if it’s just so you can operate NGAD out of more places.If the required thrust‑to‑weight ratio is achieved without afterburner, why not do without it?
Is there an upgraded F100 variant going into production? Or will the F-47 use a F100-229? There is the PW-232 but was it ever tested?
Yeah, I was expecting F110s, not F100s. Or a couple of F119s for the higher exhaust velocity for the test birds.Definitely, but I don’t think anyone thought it would be that particular engine.
ETA: from what I heard it is unexpected. But I am not well informed.
Afterburner is in. Supercruise is out.You wouldn’t go without an afterburner because not having one will significantly increase the TOFL required to operate the aircraft; especially at full combat load. Whatever your max dry thrust and dry T/W ratio is, afterburners will increase that and shorten your TOFL. Seeing how basing option and ACE is at the top of wargame planners mind these days, I’m willing to bet that you will have an afterburner even if it’s just so you can operate NGAD out of more places.
I think supercruise will be in but to what max mach number?Afterburner is in. Supercruise is out.
I'd guesstimate to about M1.5 as the threshold number. If someone could pull off M1.8 I think they'd take it.I think supercruise will be in but to what max mach number?
I think 1.8 feasible. I am wondering when the new adaptive engine comes into play, possibly Mach 2 supercruise?I'd guesstimate to about M1.5 as the threshold number. If someone could pull off M1.8 I think they'd take it.
No, I think that the 3-stream engines will lose exhaust flow velocity compared to a standard F119. And exhaust velocity is what lets you supercruise.I think 1.8 feasible. I am wondering when the new adaptive engine comes into play, possibly Mach 2 supercruise?
Wouldnt the adaptive cycling third stream be closed for high mach transit? It would be completely open at subsonic speeds and somewhere in between otherwise.I think 1.8 feasible. I am wondering when the new adaptive engine comes into play, possibly Mach 2 supercruise?
Wonder if there is connection with RTX's deal with Hermeus to produce F100s? Was there a competition or did Boeing or the AF select the F100 based on design considerations or test data from the demontrator(s)?Thanks for flagging @B2Blain
I agree that I too specifically had thought a F110 derivative was going to be used for at least the first increment but the more concrete belief was that an engine derived from the F100/F110 class was going to be used given NGAP timelines.
It’ll be interesting if the choice of going with the F100 reflected something unique PW achieved with a derivative, the fact that GE will have it hands full with EX engines (tbd what happens with a USAF Viper G model pot’l buy), something else or a combo of the foregoing.
I believe that's the CONOPS, yes.Wouldnt the adaptive cycling third stream be closed for high mach transit? It would be completely open at subsonic speeds and somewhere in between otherwise.
May be not , Hermeus work on a precooler for the F-110 to push the trust to enable mach 3. May be it could be use on the F-47.the case of why F100 for Hermeus is of course another horse and nothing to do with -XXs engines, although the F100 is a proven, well understood and modernized so it’s a good baseline design.
Still no word on power generation.
It was tested (and reached 37,150lbs of thrust) but I doubt they ever built any beyond the one test item. F119 Doctor would probably know more about that.JJ Gertler dropped a nugget on the Defense and Aerospace podcast. He said the interim engine for the F-47 is an F100. That's the first I heard of it. I am not sure if this has been said previously.
That's an odd choice. Other than Hermeus, I am not sure that any fighter has used the F100 in recent memory. The F-15EX uses the F110. Recent deliveries of F-16s to Qatar and UAE also use the F110. Block 70 F-16s use the F110. The only Block 72 F-16Vs appear to be upgraded Polish Block 52s.
Is there an upgraded F100 variant going into production? Or will the F-47 use a F100-229? There is the PW-232 but was it ever tested?
YF23 was supercruising to mach 1.8 if I remember well.I think 1.8 feasible. I am wondering when the new adaptive engine comes into play, possibly Mach 2 supercruise?
And you are correct.YF23 was supercruising to mach 1.8 if I remember well.
Does it seem strange they'd go through the trouble of doing that rather than just using F110s? Apparently the -229s exhaust velocity is hotter/faster than the F110s, which I'd think would make it better at high speed, but from what I've read, the F110 F-16s are quicker than the -229 F-16s.The F100-232 had a 275 pps airflow fan derived from the YF119 design mounted to the -229 core and LPT. As far as I know, there were only a few (possibly only one) ground test demonstration prototypes built. While I don’t know for sure, the 37k thrust demonstration would have been accomplished on a cold day where the fan could have been pushed to its full potential without exceeding short term turbine temperature limits. The production engine would have been rated at 32K running regular -229 turbine temperatures.
Since the -232 fan was longer than the -229 fan, the production engine would have had a shortened AB section, extended gearbox PTO front cover, and several offset customer bleed connections to line up with the normal F-15/F-16 engine bay interfaces. If this engine was resurrected for an interim engine for either the F-47 or F/A-XX, these change consideration would be different.
It would be very unlikely that the F100-232 would be resurrected for this purpose. If demonstrating supercruise with intermin engines is important, then the F119 would be the only choice. If you just want to fly fast and it doesn’t matter if it is supercruise, the F110-129 or 132 (if available, not currently in production AFAIK) would probably fit the bill. My guess is that the F100-229 would have sufficient thrust performance, but the engine airflow is low enough to impact any demonstration of inlet performance due to flow mismatch.Does it seem strange they'd go through the trouble of doing that rather than just using F110s? Apparently the -229s exhaust velocity is hotter/faster than the F110s, which I'd think would make it better at high speed, but from what I've read, the F110 F-16s are quicker than the -229 F-16s.![]()
Okay, that makes a lot more sense.Gertler's response is that he "presumes" F100 for the first F-47s based on the comment that the demonstrator (AII-X demonstrator) flew with F100s.