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2010: On March 6, 2010 the Banks crew tested out the Top Diesel Dragster's new "Stroker" 427 cu. in., twin-turbo 7.0L Duramax engine at the NHRDA Nationals in Wittmann, Arizona. The Banks Sidewinder S-10 runs at NHRDA in Topeka, Kansas winning top diesel class with 7.77et @ 178 mph.
2007: The Wes Anderson-driven Banks "Sidewinder" S-10 with a 1250-hp, 6.6 litre Banks Power/Duramax engine becomes the "World's Quickest and Fastest Diesel Drag Truck" with a 7.72 second elapsed time and a top speed of 179+ mph in the quarter-mile, as recorded by the National Hot Rod Diesel Association..
[1] [3] The engine, first introduced with a displacement of 7.3L was first used with Ford Super Duty trucks starting with the 2020 model year and was later added to the Ford E-Series for the 2021 model year.
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 ...
Twin-turbo is a layout in which two turbochargers are used to compress the intake fuel/air mixture (or intake air, in the case of a direct-injection engine). The most common layout features two identical or mirrored turbochargers in parallel, each processing half of a V engine 's produced exhaust through independent piping.
The first turbo-diesel production car was the Mercedes-Benz 300SD (W116) saloon, which was sold in the United States from mid-1978 and powered by the OM617 five-cylinder engine. [25] A year later, the Peugeot 604 D Turbo became the first turbo-diesel car to be sold in Europe. Turbo-diesel cars began to be widely built and sold in Europe during ...
A pressure wave supercharger (also known as a wave rotor [1]) is a type of supercharger technology that harnesses the pressure waves produced by an internal combustion engine exhaust gas pulses to compress the intake air. Its automotive use is not widespread; the most widely used example is the Comprex, developed by Brown Boveri. [2] [3] [4]
Below this rpm, both exhaust and air inlet of the secondary turbo are closed. Being individually smaller they have reduced lag [16] and having the second turbo operating at a higher rpm range allows it to get to full rotational speed before it is required. Such combinations are referred to as a sequential twin-turbo. Sequential twin-turbo ...
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