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  2. List of Ford engines - Wikipedia

    en.wikipedia.org/wiki/List_of_Ford_engines

    2011–present Scorpion Diesel V8—"Power Stroke" OHV 6.7 L 32-valve DI turbo diesel (F-series only) 2020–present Godzilla V8 — Pushrod V8 7.3L (445ci), gasoline, naturally aspirated, port fuel injected, variable timing, 16valve, 10.5:1 compression made for F-series Super Duty models.

  3. Duramax V8 engine - Wikipedia

    en.wikipedia.org/wiki/Duramax_V8_engine

    The L5P Duramax is the latest version of the Duramax V8 diesel engine.(engine code Y). Introduced in the 2017 model year, it was the most powerful diesel engine GM had produced, with 445 hp (332 kW) at 2,800 rpm and 910 lbâ‹…ft (1,234 Nâ‹…m) at 1,600 rpm.

  4. Ford straight-six engine - Wikipedia

    en.wikipedia.org/wiki/Ford_straight-six_engine

    This engine, the Barra 310T, was the first Australian-built engine to achieve over 100 hp per litre. [20] The ultimate iteration of the Barra engine was installed in the limited-production FG X XR6 Sprint (limited to 500 units) of 2016. This engine produced 325 kW (436 hp) @ 6000rpm and 576 Nâ‹…m (425 lbâ‹…ft) @ 2750 rpm.

  5. Detroit Diesel Series 149 - Wikipedia

    en.wikipedia.org/wiki/Detroit_Diesel_Series_149

    66–72 in (1,676.4–1,828.8 mm) Dry weight. 8,600–10,860 lb (3,901–4,926 kg) The Detroit Diesel 149 is a series of two-stroke diesel engines manufactured by Detroit Diesel which were first announced in early 1966. After Detroit Diesel was spun off in 1988 and later acquired by MTU, production of Series 149 engines was discontinued around ...

  6. Diesel cycle - Wikipedia

    en.wikipedia.org/wiki/Diesel_cycle

    Diesel engines have the lowest specific fuel consumption of any large internal combustion engine employing a single cycle, 0.26 lb/hp·h (0.16 kg/kWh) for very large marine engines (combined cycle power plants are more efficient, but employ two engines rather than one).

  7. 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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