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The Influence of Intake Charge Conditions on Pre-Ignition Reactions for Gasoline-Fueled HCCI Engines

机译:摄入量对汽油燃料HCCI发动机预点火反应的影响

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This study investigates the influence of intake charge conditions on pre-ignition reactions, specifically intermediate temperature heat release (ITHR), in gasoline-fueled HCCI engines. The influence of changes in intake pressure, intake temperature, and equivalence ratio are investigated for their influence on the relative amount of ITHR as a fraction of total heat release. The study of ITHR in gasoline HCCI is critical as the ITHR enables delayed combustion timing which allows high power output while avoiding excessive ringing. The ITHR behavior of gasoline fuel is studied on a 1.9 L Volkswagen TDI engine modified for HCCI operation. 91-Octane E10 commercial grade gasoline is port-injected to produce a relatively homogeneous in-cylinder fuel-air mixture. Experimental tests are conducted for intake pressures from 1.4 bar to 2.0 bar boosted. Intake temperatures are varied in a range that enabled combustion timing (CA50) from TDC to misfire. The equivalence ratio is varied from 0.20 to 0.55. Using the rate of heat release computed from the in-cylinder pressure data, the trends of change of the ITHR magnitude with the change of the intake charge conditions are indentified.
机译:本研究探讨的进气充量条件对提前点火的反应的影响,特别是中间温度的热释放(ITHR),在以汽油为燃料HCCI发动机。在进气压力的变化,进气温度,和当量比的影响进行了研究它们对ITHR作为总热释放的一小部分的相对量的影响。 ITHR的汽油HCCI研究是至关重要的作为ITHR能够延迟燃烧正时,它允许高功率输出,同时避免过度振荡。汽油燃料的ITHR行为研究了修改后用于HCCI操作1.9L的大众TDI发动机。 91辛烷E10商业级汽油是端口注入,以产生相对均匀的缸内燃料 - 空气混合物。实验测试是从1.4巴用于进气的压力下进行,以2.0巴升压。进气的温度以使该燃烧定时(CA50)从TDC到失火的范围内变化。当量比为0.20至0.55变化。使用热释放从缸内压力数据计算速率,ITHR大小与进气充量条件的变化的变化趋势中鉴定。

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