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A mechanically driven supercharger offers exceptional response and low-rpm performance, as it does not rely on pressurization of the exhaust manifold (assuming that it is a positive-displacement design, such as a Roots-type or twin-screw, as opposed to a centrifugal supercharger, which does not provide substantial boost in the lower rpm range), but is less efficient than a turbocharger due to ...
[28] [29] Some turbocharger designs are available with multiple turbine housing options, allowing a housing to be selected to best suit the engine's characteristics and the performance requirements. A turbocharger's performance is closely tied to its size, [30] and the relative sizes of the turbine wheel and the compressor wheel. Large turbines ...
Most turbocharged petrol engines use a single turbocharger; however, twin-turbo configurations are also often used. In motor racing, turbochargers were used in various forms of motorsport in the 1970s and 1980s. Since the mid-2010s, turbocharging has returned to several motor racing categories, such as Formula One and the World Rally Championship.
The 1983 model Honda CX650 Turbos had solved the lag problems that earlier models like the CX500 Turbo had encountered. To rectify turbo lags capacity and compression ratio was raised from 7.2:1 to 7.8:1. [4] Additionally, in 1978 Kawasaki offered the Z1R-TC, a semi-production model built by Turbo Cycle Corporation and sold through Kawasaki ...
Luckily, the Shelby engines have proved to be reliable even without the durability enhancements of the production Turbo II. The GLH-S had a 0–60 mph (97 km/h) acceleration time of 6.5 seconds [2] and a 14.8 second quarter mile (402 m) time. Top speed was 135 mph (217 km/h).
The result is air that is highly pressurized, but that travels at low speed. [8] The high-pressure, low-speed air is then fed into the engine, where the additional pressure gives the engine the ability to burn more fuel and have a higher level of combustion. This results in a faster, more responsive vehicle due to greater engine volumetric ...
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The Brabham BT52 was a Formula One car designed for the Brabham team by longtime Brabham designer Gordon Murray for the 1983 season. The car ran on Michelin tyres and was powered by the BMW M12/13 four-cylinder turbocharged engine, which in 1983 produced a maximum power of approximately 1,280 bhp (950 kW) in qualifying trim, detuned to around 850 bhp (630 kW) for the proper races.
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