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  2. Variable-geometry turbocharger - Wikipedia

    en.wikipedia.org/wiki/Variable-geometry_turbocharger

    The Peugeot 405 T16, launched in 1992, used a Garrett VAT25 variable-geometry turbocharger on its 2.0-litre 16-valve engine. The 2007 Porsche 911 Turbo has twin variable-geometry turbochargers on its 3.6-litre horizontally-opposed six-cylinder gasoline engine. In 2007, Acura introduced the RDX with Variable Geometry Turbocharger following a ...

  3. Turbo-compound engine - Wikipedia

    en.wikipedia.org/wiki/Turbo-compound_engine

    A turbo-compound engine is a reciprocating engine that employs a turbine to recover energy from the exhaust gases. Instead of using that energy to drive a turbocharger as found in many high-power aircraft engines , the energy is instead sent to the output shaft to increase the total power delivered by the engine.

  4. Mercedes-Benz OM606 engine - Wikipedia

    en.wikipedia.org/wiki/Mercedes-Benz_OM606_engine

    The Mercedes-Benz OM606 is a 3.0 litres (2,996 cc) inline-six cylinder (R6/I6) double overhead camshaft (DOHC) diesel engine with indirect injection manufactured by Mercedes-Benz between 1993 and 2001. It replaced the single overhead camshaft (SOHC) OM603 engine.

  5. Turbocharger - Wikipedia

    en.wikipedia.org/wiki/Turbocharger

    In an internal combustion engine, a turbocharger (also known as a turbo or a turbosupercharger) is a forced induction device that is powered by the flow of exhaust gases. It uses this energy to compress the intake air, forcing more air into the engine in order to produce more power for a given displacement .

  6. Tatra 815 - Wikipedia

    en.wikipedia.org/wiki/Tatra_815

    The Tatra engine [2] is an air-cooled, OHV, currently 12.7 litre 90° V8 120 x 140 mm diesel engine with direct fuel injection. It is turbocharged by one Holset WasteGate turbocharger, and equipped with an intercooler placed directly over the engine. The engine is equipped with a mechanically controlled in-line Bosch injection pump.

  7. Wastegate - Wikipedia

    en.wikipedia.org/wiki/Wastegate

    big turbo/low boost = bigger wastegate; big turbo/high boost = smaller wastegate; small turbo/low boost = bigger wastegate; small turbo/high boost = smaller wastegate; However, exhaust flow is an effect of power. So, another decision chart should look like this. [citation needed] big turbo/small engine/small power = small wastegate