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![]() Steve wrote: Luke Scharf wrote: Steve wrote: But there are more and more small diesels that run just as fast as gasoline engines. There's no fundamental limit thats any different than a gasoline engine, really, but up until now there's not been a demand for high-RPM diesels. When I was reading about the Volkswagen TDI engine, I vaguely remember coming across someone who said that the redline of that engine was set by the speed which which the burning fuel expanded. Sounds rather fundamental to me - but, then again, I'm a computer guy. -Luke In almost ALL real-world engines, the actual limit is set by the point at which some mechanical component would fail. The engine's torque *may* drop off well before the mechanical failure point if it can't ingest enough fuel or air at high speed. In the case of a diesel, you can pretty much increase the burn rate to as high as the mechanical parts can tolerate by increasing turbocharger boost (and injection rate to match). Since detonation isn't possible (no fuel exists in the cylinder until combustion is supposed to begin anyway) the only limits to boost pressure are mechanical in nature. In practical terms, no one really wants or needs a 9000 RPM diesel, though. Diesel fuel is not conducive to high speed running. Nor is a long injection period through much of the expansion phase. Yes you can boost the turbocharger and the other things, but an Otto cycle engine will respond with even higher speeds. Parts failure from speed is not a problem with diesel engines, the rotating parts have to be bigger than an otto engine because of the higher compression, yet the otto engine will turn higer RPM's with smaller parts. |
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