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Experimental Investigations of Intake and Exhaust Valve Timing Effects on Charge Dilution by Residuals, Fuel Consumption and Emissions at Part Load

机译:对剩余物,零件负荷燃料消耗和排放的电荷稀释的进气和排气阀定时效应的实验研究

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Experimental investigations of intake and exhaust valve timing effects at part load have been carried out on a 4-cylinder, 1.6-l spark ignition engine. The effects of valve timing on charge dilution by residual gases, and on fuel consumption and emission characteristics, have been explored. The valve timings, and particularly the duration of the valve overlap period, strongly influence levels of charge dilution. The extent to which this accounts for the observed changes in specific fuel consumption and emissions with valve timings is investigated. Residuals gas fraction values have been determined at various steady operating conditions through the analysis of gas samples drawn from the cylinder near the tip of the spark plug. A gasoline direct injection fuel injector operating in reverse flow was used as a high-speed sampling valve. Brake specific values reflect a combination of changes in dilution and, at different brake loads, changes in pumping work. The patterns of performance mapped out as functions of valve timing are illustrated and explained.
机译:在4缸,1.6-L火花点火发动机上进行了在部件负荷下的摄入和排气门正时效应的实验研究。探讨了阀门正时对电荷稀释的影响,并探讨了剩余气体,以及燃料消耗和排放特性。阀门定时,特别是阀门重叠时段的持续时间,强烈影响浸渍水平。调查了这对观察到的特定燃料消耗和阀门定时排放的变化的程度进行了研究。通过分析从火花塞的尖端绘制的气体的气体样品分析,在各种稳定的操作条件下确定了残留气体分数。以反向流动操作的汽油直喷燃料喷射器用作高速采样阀。制动特定值反映了稀释的变化和在不同的制动载荷,泵送工作的变化的组合。示出并解释了作为气门正时函数的性能模式。

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