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  2. Detroit Diesel Series 149 - Wikipedia

    en.wikipedia.org/wiki/Detroit_Diesel_Series_149

    Over a period of time, Detroit Diesel continued to further evolve the design of the engine. They finally brought the engine up to 137.5 hp (102.5 kW) per cylinder and 406 lb⋅ft (550 N⋅m) torque per cylinder; needless to say, this is a considerable amount of power coming from 149 cu in (2.4 L) per cylinder.

  3. LCVP (United States) - Wikipedia

    en.wikipedia.org/wiki/LCVP_(United_States)

    At just over 36 ft (11 m) long and just under 11 ft (3.4 m) wide, the LCVP was not a large craft. Powered by a 225-horsepower Gray Marine 6-71 diesel engine at a maximum speed of 12 knots, it would sway in choppy seas, causing seasickness. Since its sides and rear were made of plywood, it offered limited protection from enemy fire but also ...

  4. Diesel multiple unit - Wikipedia

    en.wikipedia.org/wiki/Diesel_multiple_unit

    A British Rail Class 185 diesel hydraulic multiple unit operated by TransPennine Express at Manchester Piccadilly station, United Kingdom. A diesel multiple unit or DMU is a multiple-unit train powered by on-board diesel engines. A DMU requires no separate locomotive, as the engines are incorporated into one or more of the carriages.

  5. EMD 1010 - Wikipedia

    en.wikipedia.org/wiki/EMD_1010

    The precursor to the 1010 was introduced around 1998 as the 265H or H-Engine. The H-engine was initially designed for use as a 6,300 hp (4,700 kW) 16 cylinder, the EMD SD90MAC; however, the early engines were found to be unreliable, and unsuccessful in the market, with the proven EMD 710 2-stroke design being preferred. The EMD four-stroke ...

  6. Turbo-diesel - Wikipedia

    en.wikipedia.org/wiki/Turbo-diesel

    Diesel engines are typically well suited to turbocharging due to two factors: A "lean" air–fuel ratio, caused when the turbocharger supplies excess air into the engine, is not a problem for diesel engines, because the torque control is dependent on the mass of fuel that is injected into the combustion chamber (i.e. air-fuel ratio), rather than the quantity of the air-fuel mixture.

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