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The effects of injector targeting and fuel volatility on fuel dynamics in a PFI engine during warm-up: part II - modeling results

机译:预热过程中喷射器靶向和燃料挥发性对PFI发动机燃料动力学的影响:第二部分 - 建模结果

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The effects of injector targeting and fuel volatility on transient fuel dynamics were studied with a comprehensive quasi- dimensional model and compared with experimental results from Part I of this report. The model includes the transient, convective vaporization of four multi-component fuel films coupled with a transient thermal warm-up model for realistic valve, port and cylinder temperatures. Two injector targeting were analyzed, first with the fuel impacting the intake valve and in addition, the fuel impacting the port floor directly in front of the intake valve. The model demonstrates the importance of both component temperature and fuel impaction area on fuel vaporization, transient air fuel ratio (AFR) response and the amount of liquid fuel entering the cylinder. Generally, a smaller injector footprint area will lead to more liquid fuel entering the cylinder even if the spray is targeted at the back of the intake valve. The model results confirm that the lighter fuel components are preferentially vaporized and burned during a cold start and the heavier fuel components have a longer time response during a transient and are preferentially stored in both the port and cylinder. The model predicted AFR response as function of both fuel volatility and injector targeting closely matches that found experimentally and the model provides additional insight into the physical processes important in PFI fuel preparation.
机译:采用综合准模型研究了喷射器靶向和燃料挥发性对瞬态燃料动力学的影响,并与本报告第I部分的实验结果相比。该模型包括四种多分量燃料膜的瞬态,对流蒸发,其与瞬态热预热模型为现实阀,端口和圆柱温度。分析了两种喷射器靶向,首先用燃料冲击进气门,此外,燃料直接在进气阀前面撞击端口。该模型演示了组分温度和燃料剥离区域对燃料蒸发的重要性,瞬态空燃比(AFR)响应和进入气缸的液体燃料的量。通常,即使喷射在进气门的背面瞄准喷射,较小的喷射器足迹区域也会导致进入汽缸的更多液体燃料。模型结果证实,在冷启动期间优先蒸发和燃烧较轻的燃料部件,并且较重的燃料部件在瞬态期间具有更长的时间响应,并且优先存储在端口和圆柱体中。模型预测AFR响应作为燃料波动率和注射器的功能紧密匹配,在实验发现的情况下,该模型提供了额外的洞察PFI燃料制备中重要的物理过程。

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