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  2. Volvo B8444S engine - Wikipedia

    en.wikipedia.org/wiki/Volvo_B8444S_engine

    Volvo began offering a 4.4 L (4,414 cc) V8 engine in its large P2 platform automobiles in 2005. [6] [7] It was initially offered only for the Volvo XC90 [6] [7] but later found its way in the second generation Volvo S80, [5] and was mated to a six speed Aisin Seiki AWTF80-SC transmission of Japan also with a Swedish Haldex all-wheel drive (AWD) system.

  3. Volvo Engine Architecture - Wikipedia

    en.wikipedia.org/wiki/Volvo_Engine_Architecture

    All 2.0 L (1,969 cc) petrol engines have a bore of 82 mm (3.2 in) and a stroke of 93.2 mm (3.7 in) with a compression ratio of 10.3:1. [85] All engines are turbocharged and intercooled with direct injection. More powerful versions are equipped with a roots type supercharger in addition to being turbocharged and intercooled.

  4. Volvo XC90 - Wikipedia

    en.wikipedia.org/wiki/Volvo_XC90

    The Volvo XC90 is a mid-size luxury SUV [1] [2] manufactured and marketed by Volvo Cars since 2002 and now in its second generation.. The first generation was introduced at the 2002 North American International Auto Show and used the Volvo P2 platform shared with the first generation Volvo S80 and other large Volvo cars.

  5. Check engine light - Wikipedia

    en.wikipedia.org/wiki/Check_engine_light

    A check engine light or malfunction indicator lamp (MIL), is a tell-tale that a computerized engine-management system uses to indicate a malfunction or problem with the vehicle ranging from minor (such as a loose gas cap) to serious (worn spark plugs, engine problems or a faulty oil valve, etc.).

  6. MAP sensor - Wikipedia

    en.wikipedia.org/wiki/MAP_sensor

    It is a one-to-one relationship with an offset of -100 kPa for boost pressure. Thus, a MAP sensor will always read 100 kPa more than a boost sensor measuring the same conditions. A MAP sensor will never display a negative reading because it is measuring absolute pressure, where zero is the total absence of pressure.

  7. Centrifugal-type supercharger - Wikipedia

    en.wikipedia.org/wiki/Centrifugal-type_supercharger

    Distancing the supercharger from the engine via a mounting bracket greatly reduces heat transfer from the engine to the supercharger during operation. By comparison, a twin screw or roots blower which is nested in the center (valley) of the engine, will absorb heat (heat soak) during operation due to thermal transfer from the engine block and ...

  8. Pressure wave supercharger - Wikipedia

    en.wikipedia.org/wiki/Pressure_wave_supercharger

    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]

  9. Roots blower - Wikipedia

    en.wikipedia.org/wiki/Roots_blower

    An Eaton M62 Roots-type supercharger is visible at the front of this Ecotec LSJ engine in a 2006 Saturn Ion Red Line.. The Roots-type blower is simple and widely used. It can be more effective than alternative superchargers at developing positive intake manifold pressure (i.e., above atmospheric pressure) at low engine speeds, making it a popular choice for passenger automobile applications.