Earlier quoted context omitted.
AFAIK we're still not doing it right. The best way is to make the electric motor the main motor, and having the gasoline engine be small and tuned to run at a consistent peak efficiency RPM, and only used to charge the batteries. This was figured out in 1979! http://www.motherearthnews.com/green-transportation/electric... (see the diagram in the fourth image).
Yes, that is exactly what I meant. There are already some cars that do it almost properly. http://www.fiskerautomotive.com/ https://en.wikipedia.org/wiki/Yo-Mobile Btw Yo-Mobile is interesting since they are using rotary engine to do power generation.
How a Car Engine Works
51–60 of 172 posts
Re: How a Car Engine Works
#5293 octane is premium fuel in the US? Petrol in the UK starts at 95 and premium is 98. What’s the practical difference then?
My car asks for 91 octane fuel. I have no idea where I'm supposed to get that when all I see is 87, 89, and 93. Since it's an Italian-designed car, I was expecting that 91 is a common European designation. Perhaps not?
If it is modern and fuel injected, 89 or 87 will probably also be fine, it just won't perform quite as well (but the computer will notice and back off of the timing).
Re: How a Car Engine Works
#53Earlier quoted context omitted.
My car asks for 91 octane fuel. I have no idea where I'm supposed to get that when all I see is 87, 89, and 93. Since it's an Italian-designed car, I was expecting that 91 is a common European designation. Perhaps not?
It's generally an 'at least', you probably don't need to worry about 93. If it is modern and fuel injected, 89 or 87 will probably also be fine, it just won't perform quite as well (but the computer will notice and back off of the timing).
Since I secretly wish my car was a small diesel, the slight lack of power with 87 doesn't bother me too much :)
Re: How a Car Engine Works
#54It's worth noting that the engine illustrated is a gasoline direct injection engine, which are fairly common on new cars but historically not so. Until the early 2000s most fuel injected gasoline engines were multi-point injection - the fuel was injected in to the incoming air stream immediately before the cylinder, and before that indirect injection which injected where the carburettor was. Then there are carburetto…
Interestingly, this could be a drawing of a ultra modern gas direct injection system running in classic mode. Ford's EcoTech will, under certain conditions, operate like this picture, though I am sure that is not what the author had in mind.
Re: How a Car Engine Works
#55Earlier quoted context omitted.
The other difference is Diesel engines ignite the fuel by compressing it rather than with a spark. (Also Diesel is the engine type not the fuel http://en.wikipedia.org/wiki/Diesel_engine )
Well they both work on compression, diesels simply rely on it more than gasoline engines. Diesel engines work on what's called adiabatic compression heating. In other words, the compression causes the air to heat to a point higher than the ignition point of the fuel. Diesel engines usually use glow plugs to compensate for the lack of adiabatic compression heating when the engine is cold.
Re: How a Car Engine Works
#56Earlier quoted context omitted.
It's generally an 'at least', you probably don't need to worry about 93. If it is modern and fuel injected, 89 or 87 will probably also be fine, it just won't perform quite as well (but the computer will notice and back off of the timing).
Yeah, I put in 93 once and had a small but noticeable increase in power. From my understanding, this only really happens if your knock sensor is retarding your timing with 87 octane and 93 lets it advance the timing further. It's 87 minimum, 91 recommended with my engine. Since I secretly wish my car was a small diesel, the slight lack of power with 87 doesn't bother me too much :)
Re: How a Car Engine Works
#57Hi fellow gear-heads... very cool engine graphics! On a related note, I wanted to add that, if you are not familiar with dual-clutch transmissions [1], they are pretty interesting. One example (many manufacturers offer this type of transmission) is the Porsche Doppelkupplungsgetriebe (or simply PDK) [2], developed by Porsche. It is essentially two gearboxes in one complete transmission package, where both gearboxes p…
Re: How a Car Engine Works
#58Nowadays hybrids are smarter. Combustion engine is used to charge batteries and provide power to the electric motor, it's more efficient way of using energy from gasoline. Using combustion with electric motor stands out to be much less efficient.
That isn't true, most hybrids still have a mechanical connection between the combustion engine and the drive wheels. That is, the Prius, Ford hybrids, GM hybrids, I'm sure others.
From a technical standpoint, it's a good design for a hybrid - you can optimize each part of the system separately. But GM didn't quite get the car as a whole correct -- it has some ergonomic problems, priced higher than the value (perceived and actual) the customer got, and so on.
Re: How a Car Engine Works
#59Earlier quoted context omitted.
I just took a close look at it, and I think you're right. It's not the easiest thing to see due to the wireframe, but with a second look it does appear that the injectors are just behind the valve. So yes, it's multi-point injection, rather than direct injection which is the new hotness for gasoline. Formula 1 will allow it from next year with the new V6 formula!
V6 formula!?!? Validating my decision several years ago to quit following F1. ;-)
Re: How a Car Engine Works
#60How a gasoline car engine works, specifically a piston car engine with injection. There are lots of other variations on the theme of car engine. For instance, Diesel, Natural Gas, LPG, electricity (non-hybrid) and another configurations for the hot chamber, for instance a Wankel engine. Instead of injection there is carburation (an older, less efficient process for getting the fuel air mixture into the cylinders), an…
Indeed. It also assumes an overhead cam configuration, and ignores the possibility of a pushrod / lifter based cam/valve system. And showing a distributor glosses over the electronic timing systems that newer cars use, whereby they don't need a traditional distributor at all, just a crankshaft position sensor. Still, for an engine neophyte, that was a pretty decent explanation.