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  2. Cummins B Series engine - Wikipedia

    en.wikipedia.org/wiki/Cummins_B_Series_engine

    Some early 6BTs were supplied with CAV rotary pumps instead, before the Bosch system became the sole standard. This engine started life in 1984 designed as an agricultural engine, for use in Case agricultural equipment. [4] [full citation needed] After 1989, the 6BT engine was used in light duty, medium duty and select heavy duty trucks and buses.

  3. Exhaust heat recovery system - Wikipedia

    en.wikipedia.org/wiki/Exhaust_heat_recovery_system

    For hybrid applications, it also can warm the battery pack. The cooling system is connected to a heat exchanger placed in the exhaust gas transferring the thermal energy from the exhaust gas to the cooling system. When the engine is warmed up the exhaust gas is diverted to a by-pass pipe. [4]

  4. Ward's 10 Best Engines - Wikipedia

    en.wikipedia.org/wiki/Ward's_10_Best_Engines

    5.4 L: V8 engine: Triton SOHC General Motors: 5.7 L: V8 engine: LS1 OHV Mazda: 2.3 L: V6 engine: KJ-ZEM DOHC Miller cycle Supercharged: Mazda Millenia: Mercedes-Benz: 3.2 L: V6 engine: M112 E32 SOHC Nissan: 3.0 L: V6 engine: VQ30DE DOHC Toyota: 4.0 L: V8 engine: 1UZ-FE DOHC Volkswagen Group: 1.8 L: Inline-four engine: EA827/EA113 20valve Turbo ...

  5. Toyota K engine - Wikipedia

    en.wikipedia.org/wiki/Toyota_K_engine

    Toyota 5K-C engine in a 1991 Liteace 5K engine in a 1993 Toyota Kijang. The 1.5 L (1,486 cc) 5K was produced from 1983 through 1996. Typical output is 55 kW (74 hp; 75 PS) at 5600 rpm. Bore and stroke is 80.5 mm × 73 mm (3.17 in × 2.87 in). It was available with either 4- or 5-speed manual transmissions.

  6. Ford Power Stroke engine - Wikipedia

    en.wikipedia.org/wiki/Ford_Power_Stroke_engine

    The 4.5L Power Stroke was a V6 Power Stroke with the same turbo design as a 6.4L. The geometry of the engines is the same as the 6.0L minus two cylinders. The 4.5L and 6.0L share some of the same engine parts. The 4.5L came stock with 200 hp (149 kW) and 440 lb⋅ft (597 N⋅m) of torque.

  7. Variable valve timing - Wikipedia

    en.wikipedia.org/wiki/Variable_valve_timing

    This engine uses continuously variable timing for the inlet valves. Variable valve timing (VVT) is the process of altering the timing of a valve lift event in an internal combustion engine, and is often used to improve performance, fuel economy or emissions. It is increasingly being used in combination with variable valve lift systems.