SConnors
New member
I've read about an engine "requiring backpressure" quite a few times in this forum. I beleive this is a misconception. Engines do not require backpressure. They do, however require exhaust scavenging.
Headers have been a popular modification for engines for decades. Higher flow tubular headers, substituted for stock cast manifolds, has resulted in increased performance for enthusiasts for years. A common "bigger is better" attitude resulted in oversized header tubing, which resulted in poor exhaust scavenging, possible transfer of the intake charge straight to the exhaust, and/or less power. This is where the school of thought that an engine "requires backpressure" was born.
I've read that people are scared to go with a free flowing exhaust because it will "limit torque". I would love to see evidence of this, but have not been able to discover any.
Any engine with similar exhaust scavenging (ie. same headers) SHOULD respond favorably to less overall backpressure. Fluid dynamics, however, still applies. Gradual transitions from increases in diameter are required to reduce the restriction of the transition (a pipe that starts as a hole in a wall will flow better than an unsupported pipe due to venturi effect.)
The above asumption requires that the air fuel ratio remains the same throuought the RPM range and ignition timing remains optimal...
Anyway, prove me wrong... I love to learn new things, but this new concept runs contrary to my personal experience and observations.
Keep it civil, please
:bash:
Headers have been a popular modification for engines for decades. Higher flow tubular headers, substituted for stock cast manifolds, has resulted in increased performance for enthusiasts for years. A common "bigger is better" attitude resulted in oversized header tubing, which resulted in poor exhaust scavenging, possible transfer of the intake charge straight to the exhaust, and/or less power. This is where the school of thought that an engine "requires backpressure" was born.
I've read that people are scared to go with a free flowing exhaust because it will "limit torque". I would love to see evidence of this, but have not been able to discover any.
Any engine with similar exhaust scavenging (ie. same headers) SHOULD respond favorably to less overall backpressure. Fluid dynamics, however, still applies. Gradual transitions from increases in diameter are required to reduce the restriction of the transition (a pipe that starts as a hole in a wall will flow better than an unsupported pipe due to venturi effect.)
The above asumption requires that the air fuel ratio remains the same throuought the RPM range and ignition timing remains optimal...
Anyway, prove me wrong... I love to learn new things, but this new concept runs contrary to my personal experience and observations.
Keep it civil, please
:bash: