98OzarksRunner
New member
Originally Posted by Shibby!
Where do people come up with this stuff??
Oxygen doesn't burn?! What does the fuel require to burn using simple chemistry?
How does the combustion engine come up with X amount of POWER?!?!
Those factors of air intake temperature have correlations to air density at that temperature. People don't talk air density for more nitrogen, they talk more air density in relation to more oxygen. A requirement of any combustion.
I'm not trying to be a smartass but some of this stuff is blowing my mind.
Yeah, I caught that too. I also caught a number of other things across three pages of responses and didn't feel it was worth the time to address every one of them.
To more thoroughly address that particular point and to avoid further confusion, the less dense air means there's less available oxygen to burn the fuel (burning is, chemically speaking, rapid oxidation). By warming the air you are decreasing its density and thus decreasing the available oxygen. By decreasing the available oxygen, assume the engine continues to (at the split second the deck plat is removed) inject fuel at the "stock" rate. Once the available oxygen is decreased, the exhaust becomes rich. That rich condition is seen by the O2 sensors and a signal is sent to the fuel system to lean out to compensate. The decrease in available fuel for ignition leads to less power/response/etc.
My point was that, as anyone who's had junior high physical science knows, oxygen doesn't burn. It is an oxidizer (duh!) and combution is defined as the rapid oxidation of a fuel (the gasoline not the oxygen). Oxygen is required for combustion but it doesn't burn; the fuel burns (I don't remember if it was in junior high school physical science that I 'came up with this stuff' but I do remember that much, though I'm a little rusty on the oxidation/reduction equations).
To move a vehicle at a given speed, as spectre6000 noted, takes a given amount of horsepower. It does, as spectre6000 noted, take a relatively small amount of power to maintain a given speed even for a large vehicle like a 4Runner. That horsepower comes from the energy released by burning a fuel (gasoline). There are formulas for calculating exactly how much fuel is required to produce a given amount of horsepower, which take into account things like volumetric efficiency (how efficently the cylinders can be filled at any given RPM), temperature, load, etc. But the bottom line is to make X amount of horsepower it takes Y amount of fuel no matter what the air temperature or density is (except that if the ambient temperature is higher it might take slightly less horsepower [like a fraction of a percent] to move the vehicle in the thinner air).
As spectre6000 also noted, the ECM will correct the mixture (based on the mass of the air detected by the MAF [since it's measuring mass not volume it corrects for air temp - it knows the air is less dense], feedback from the O2 sensors, and a few other sensors, depending on the EFI system) to maintain optimal A/F ratio at a given load. Since warmer air will result in less oxygen at a given airflow the ECM will provide less gasoline to match the oxygen level. That SOUNDS like it will reduce fuel usage and raise economy. It would except that the power output also is reduced and to maintain a given speed you have to put the pedal down more, resulting in more airflow since it still takes Y amount of fuel to produce X amount of horsepower to propel the vehicle at a given speed.
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