Originally Posted by Phimosis About spreading false information: Headers don't cause supercharged cars to lose boost. From a physics standpoint, increasing exhaust backpressure makes it harder to get exahust gas
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08-17-2010, 07:09 PM | #1381 (permalink) | |
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08-17-2010, 10:46 PM | #1386 (permalink) | |
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08-18-2010, 07:10 AM | #1387 (permalink) | |
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A lot of people are just ignorant in understanding the process and to the terms used. Boost is loosly used in conversations about turbos and supercharges in large part because boost is the only parameter that can be measured and used to "compare" peformance in like applications. Unfortuanately we can't measure the actual air volume entering into the intake. As mentioned above boost refers to the amount of resistance to the air flow produced by FI systems. Boost is relative to the amount of air that can be "forced" (hence the term "Forced Inductions") into the engines cyclinder while the intake valve is open. There is only a small duration that the intake vavle is open on any given cylinder while all the others are closed. This is going to provide resistance to the air being forced into the intake by the FI system. Just remember that boost can only be used to compare peformance of like engines with like FI sytems. All Z's for instance will make the same horsepower (provided all peformance accessories are the same, i.e. headers, cats, etc.) at the same boost levels provided from different FI systems, PROVIDED that the the FI sytems are delivering the same amount of air at the same rpm. Since different FI sysytems spin faster or have larger impellers they will move more air than smaller ones and will produce more "Boost" at lower rpms and produce more power. The reason for the increase in boost is due to the larger systems trying to "Force" more air into the cylinder when the intake valves are open. "More air being forced against the same resistance will increase pressure (boost)". Example: a fan moving 100 cfm through a 4" diameter pipe may produce .5 psi at the discharge of the fan. When you replace the 4" pipe with a 2" the air flow decreases and the pressue at the discharge of the fan increases. Now install a larger fan that can overcome said resistance and make it large enough to produce 100 cfm throug the 2" pipe than you will see 100 cfm at a much greater pressure at the discarge of the fan. P2/P1=(cfm2/cfm1)squared Where P=pressure and CFM=cubic feet per minute of air volume The equation above is a statement that states: that an increase in air volume through the same area (say a motors intake) will increase the pressure in the intake by the "square" of the cfm or air volume increase. |
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08-18-2010, 07:52 AM | #1388 (permalink) |
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LOL, I'm not even gonna get into it.
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08-18-2010, 11:04 AM | #1390 (permalink) |
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I feel bad for the people that got duped by stillen and bought a kit before it was ready to be sold. Stillen got their money the rest of us got a supercharger that may or may not blow up their engines.
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08-18-2010, 11:51 AM | #1393 (permalink) |
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i called stillen on friday and they dont know what would happen if i drive my kit with the tune they gave me. i asked if it could blow the engine and they didnt know for sure but they said it could be a possibility. they told me to drive it if its my everday driver but if its my weekend care i would be better off not driving it because they dont know what damage it could be doing to my car
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08-18-2010, 11:56 AM | #1394 (permalink) |
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ouch.. I think my plans for FI are quickly dissipating. Contemplating keeping the Z clean with supporting mods only. And ill pick up a used 996 and build the hell out of it lol.
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