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Characterization of Performance of Short Stroke Engines with Valve Timing for Blended Bioethanol Internal Combustion

机译:配气生物乙醇内燃技术的气门正时短冲程发动机性能表征

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The present study provides a feasible strategy for minimizing automotive CO 2 emissions by coupling the principle of the Atkinson cycle with the use of bioethanol fuel. Motor cycles and scooters have a stroke to bore ratio of less than unity, which allows higher speeds. The expansion to compression ratio (ECR) of these engines can be altered by tuning the opening time of the intake and exhaust valves. The effect of ECR on fuel consumption and the feasibility of ethanol fuels are still not clear, especially for short stroke engines. Hence, in this study, the valve timing of a short stroke engine was tuned in order to explore potential bioethanol applications. The effect of valve timing on engine performance was theoretically and experimentally investigated. In addition, the application of ethanol/gasoline blended fuels, E3, E20, E50, and E85, were examined. The results show that consumption, as well as engine performance of short stroke motorcycle engines, can be improved by correctly setting the valve controls. In addition, ethanol/gasoline blended fuel can be used up to a composition of 20% without engine modification. The ignition time needs to be adjusted in fuel with higher compositions of blended ethanol. The fuel economy of a short stroke engine cannot be sharply improved using an Atkinson cycle, but CO 2 emissions can be reduced using ethanol/gasoline blended fuel. The present study demonstrates the effect of ECR on the performance of short stroke engines, and explores the feasibility of applying ethanol/gasoline blended fuel to it.
机译:通过结合阿特金森循环原理与生物乙醇燃料的使用,本研究提供了一种可行的策略,以最小化汽车的CO 2排放。摩托车和踏板车的冲程与缸径之比小于1,因此可以实现更高的速度。这些发动机的膨胀/压缩比(ECR)可通过调整进气门和排气门的打开时间来改变。 ECR对燃料消耗的影响和乙醇燃料的可行性仍不清楚,尤其是对于短冲程发动机。因此,在本研究中,为了研究潜在的生物乙醇应用,对短冲程发动机的气门正时进行了调整。理论和实验研究了气门正时对发动机性能的影响。此外,检查了乙醇/汽油混合燃料E3,E20,E50和E85的应用。结果表明,通过正确设置气门控制器,可以改善短冲程摩托车发动机的消耗以及发动机性能。此外,乙醇/汽油混合燃料的使用比例最高为20%,无需发动机改装。在混合乙醇含量较高的燃料中,点火时间需要调整。使用阿特金森循环无法大幅改善短冲程发动机的燃油经济性,但是使用乙醇/汽油混合燃料可以减少CO 2排放。本研究证明了ECR对短冲程发动机性能的影响,并探讨了将乙醇/汽油混合燃料应用于其中的可行性。

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