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  2. GM L3B engine - Wikipedia

    en.wikipedia.org/wiki/GM_L3B_engine

    The BorgWarner developed turbo can produce up to 27 psi (1.9 bar) of boost thanks in part to its unique dual volute turbine housing and an electrically actuated wastegate. Instead of two side-by-side exhaust passages like on a regular twin-scroll turbocharger , in this design the two exhaust passages are concentric and allow for better use of ...

  3. Chrysler 2.2 & 2.5 engine - Wikipedia

    en.wikipedia.org/wiki/Chrysler_2.2_&_2.5_engine

    The first version of this engine family was a normally aspirated 2.2 L (134 cu in) unit. Developed under the leadership of Chief Engineer – Engine Design and Development Willem Weertman and head of performance tuning Charles "Pete" Hagenbuch, who had worked on most of Chrysler's V-8 engines and the Chrysler Slant-6 engine, [1] it was introduced in the 1981 Dodge Aries, Dodge Omni, Plymouth ...

  4. Chrysler 1.8, 2.0 & 2.4 engine - Wikipedia

    en.wikipedia.org/wiki/Chrysler_1.8,_2.0_&_2.4_engine

    The intake manifold, reverse-rotation turbocharger, jet oil coolers, oil pump, manual transmission, pcm tuning, intercooler size, and weight are the only differences between those cars. The SRT-4 has a cast-aluminum 8-row Valeo intercooler mounted in the front, and the reverse-rotation Mitsubishi TD04LR-16Gk turbocharger has a 6 cm 2 (1 sq in ...

  5. Wastegate - Wikipedia

    en.wikipedia.org/wiki/Wastegate

    The primary function of the wastegate is to regulate the maximum boost pressure in turbocharger systems, to protect the engine and the turbocharger. One advantage of installing a remote mount wastegate to a free-float (or non-wastegate) turbo includes an allowance for a smaller area over radius (A/R) turbine housing, resulting in less lag time ...

  6. Chrysler Turbine Car - Wikipedia

    en.wikipedia.org/wiki/Chrysler_Turbine_Car

    Exploded view of the A-831 turbine engine at the Walter P. Chrysler Museum The Chrysler Turbine Car is powered by the A-831, Chrysler's fourth-generation turbine engine. The most notable difference from its predecessor, the CR2A, was its use of twin regenerators (one mounted on either side of the gasifier ) instead of a single top cover-mounted ...

  7. Nissan YD engine - Wikipedia

    en.wikipedia.org/wiki/Nissan_YD_engine

    variable geometry turbo intercooler Nissan Almera (N16) Nissan Almera Tino (V16) 2003–2005: 82 kW (112 PS; 110 hp) at 4000 rpm 100 kW (136 PS; 134 hp) at 4000 rpm: 247 N⋅m (182 lb⋅ft) at 2000 rpm 304 N⋅m (224 lb⋅ft) at 2000 rpm: common rail direct injection variable geometry turbo intercooler Nissan Primera (P12) Nissan Almera (N16)

  8. Navistar DT engine - Wikipedia

    en.wikipedia.org/wiki/Navistar_DT_engine

    The Navistar DT (Diesel Turbocharged or Diesel Turbo) engine family is a line of mid-range inline-6 diesel engines.With horsepower ratings ranging from 170 hp (130 kW) to 350 hp (260 kW), the Navistar DT engines are used primarily in medium-duty truck and bus applications such as school buses, although some versions have been developed for heavy-duty regional-haul and severe-service applications.

  9. Mercedes-Benz OM605 engine - Wikipedia

    en.wikipedia.org/wiki/Mercedes-Benz_OM605_engine

    The main differences between the naturally aspirated and the turbocharged versions are the cylinder head, injection pump, valves, camshafts, rods, intake and exhaust manifolds and some minor differences like oil feed and return holes for the turbo and different crankcase ventilation system, valve cover and plastic engine cover

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