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Also added was the #48 casting number heads with a 68 cc (4.15 cu in) chamber for higher compression, along with larger 2.11 and 1.77 in (54 and 45 mm) valves. Free-flowing exhaust manifolds from the 400 Ram Air were used late in the model year. This was underrated at 330 hp (246 kW).
Ram-air intake on a Kawasaki ZX-12R. A ram-air intake is any intake design which uses the dynamic air pressure created by vehicle motion, or ram pressure, to increase the static air pressure inside of the intake manifold on an internal combustion engine, thus allowing a greater massflow through the engine and hence increasing engine power.
Work Completed: Limited slip differential fixed with new friction plates, geared down final drive to increase acceleration, speedometer re-adjusted, suspensions and whole exhaust assembly replaced, performance exhaust manifolds, air filter and throttle body installed, smaller pulleys installed to minimize power loss and increase performance ...
The top option was the Ram Air IV rated at 370 hp (375 PS; 276 kW) at 5,500 rpm and 445 lb⋅ft (603 N⋅m) at 3,900 rpm of torque, [17] which featured special header-like high-flow exhaust manifolds, high-flow cylinder heads, a specific high-rise aluminum intake manifold, larger Rochester Quadrajet 4-barrel carburetor, high-lift/long-duration ...
These parts can include the oil pan, timing cover, valve covers, intake manifold, emission-control parts, carburetor or fuel injection system, the exhaust manifold(s), alternator, starter, power steering pump (if any), and air conditioner compressor (if any).
Ram air refers to the principle of using the airflow created by a moving object to increase ambient pressure, known as ram pressure. Often, the purpose of a ram air system is to increase an engine's power. The term "ram air" may also refer to: Parafoils, also called ram air parachutes, non-rigid airfoils inflated by wind