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A Comparison of Inlet Valve Operating Strategies in a Single-Cylinder Spark-Ignition Engine

机译:单缸火花点火发动机进气门操作策略的比较

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摘要

This experimental work was concerned with comparison of inlet valve actuation strategies in a thermodynamic single cylinder spark ignition research engine equipped with a mechanical fully variable valvetrain on both the inlet and exhaust. The research involved study of the effects of the valvetrain on combustion, fuel economy and emissions when used to achieve variable valve timing alone and when applied together with early inlet valve closing for so-called unthrottled operation. The effects of such early inlet valve closure were examined using either fully variable events or by simulating two-stage cam profile switching. While fully variable operation enabled the maximum fuel savings over the widest operating map, it was apparent that two-stage switching mechanisms can provide an attractive compromise in terms of cost versus CO 2 benefit on engines of moderate to large capacity. However, from speed-load maps obtained in the current study it would appear that a wide range of inlet valve durations would be necessary to obtain fuel savings sufficient to warrant a system any more sophisticated than current variable valve timing mechanisms in future aggressively downsized gasoline engines. © IMechE, 2009.
机译:这项实验工作涉及在热力单缸火花点火研究型发动机中对进气门致动策略的比较,该发动机在进气和排气上均配备了机械式全可变气门机构。该研究涉及对气门机构对燃烧,燃油经济性和排放的影响的研究,这些气门系统仅用于实现可变气门正时,或者与进气门提前关闭一起用于所谓的无节流操作时。使用完全可变的事件或通过模拟两级凸轮轮廓切换来检查这种早期进气门关闭的影响。虽然全可变运行在最宽的运行范围内可以最大程度地节省燃料,但很明显,两级切换机构可以在中型至大型发动机的成本与CO 2收益方面提供一个有吸引力的折衷方案。但是,从当前研究中获得的速度负载图来看,似乎需要大范围的进气门持续时间才能节省足够的燃料,以保证系统在未来大幅缩小尺寸的汽油发动机中比当前的可变气门正时机制更复杂。 ©IMechE,2009年。

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