Pulse energy enhanced turbine for automotive turbochargers
A turbocharger with a turbine ( 10 ) having a turbine wheel ( 12 ) in a turbine housing ( 14 ) with an associated manifold ( 24 ) having individual ports ( 22 ) corresponding to unobstructed passageways ( 26 ) from each cylinder of an engine. The ports ( 22 ) are substantially equally spaced around a face of the turbine wheel ( 12 ) to preserve benefits of pulses without interference.
1. A turbocharger comprising a turbine ( 10 ) having a turbine wheel ( 12 ) in a turbine housing ( 14 ) with an exhaust manifold ( 24 ) having ports ( 22 ) spaced around an axis of the turbine wheel ( 12 ) that direct separate pulses of exhaust gas to the turbine wheel ( 12 ) and a wastegate assembly ( 40 ) in the turbine housing ( 14 ) for regulating exhaust gas flow, wherein each port ( 22 ) has a tapered port edge ( 28 ) for residual gas flow in the direction of movement of blades ( 20 ) of the turbine wheel ( 12 ).
2. A turbocharger comprising a turbine ( 10 ) having a turbine wheel ( 12 ) in a turbine housing ( 14 ) with an exhaust manifold ( 24 ) having ports ( 22 ) spaced around a face of the turbine wheel ( 12 ) that direct separate pulses of exhaust gas to the turbine wheel ( 12 ) and a wastegate assembly ( 40 ) in the turbine housing ( 14 ) for regulating exhaust gas flow, wherein each of the separate pulses of exhaust gas corresponds to one cylinder of an engine associated with the turbocharger and the number of ports ( 22 ) is the same as the number of cylinders of the engine.
3. The turbocharger of claim 2 wherein exhaust gas pulsation energy is used to control gas flow in the exhaust manifold ( 24 ) with individual unobstructed passageways ( 26 ) to each port ( 22 ), wherein the exhaust manifold is coupled to the turbine ( 10 ).
4. The turbocharger of claim 2 having three ports separated by 120 degrees for the engine having three cylinders.
5. The turbocharger of claim 2 having four ports separated by 90 degrees for the engine having four cylinders.
6. The turbocharger of claim 2 having five ports separated by 72 degrees for the engine having five cylinders.
7. The turbocharger of claim 2 having six ports separated by 60 degrees for the engine having six cylinders.
8. The turbocharger according to claim 2 , wherein the ports ( 22 ) are spaced around an axis of the turbine wheel ( 12 ).