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Volumetric Efficiency Improvement of High-Pressure Fuel Pump for Gasoline Direct Injection Engine

机译:汽油直喷式发动机高压燃料泵的容积效率提高

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A recent trend in high-pressure gasoline pumps is increasing the outlet pressure. One of the most important topics for increasing this pressure is improving volumetric efficiency. Therefore, the purpose of this research is to quantify the breakdown of efficiency loss factors and to suggest a new design for improving volumetric efficiency. Authors developed a method of quantifying the efficiency loss breakdown of high-pressure gasoline pumps by using 1D fluid pressure simulation results and conducting evaluation experiments regarding sensitivity. Authors separated pump movement into three phases; suction, compression, and delivery. Authors then investigated the loss factors in each phase. As a result, authors obtained an equation for predicting the final output volume. The equation consists of a limit output volume and other types of leakage volumes. The limit output volume is calculated from the volume sucked into the pump chamber, output pressure, dead volume of the pump chamber, and displacement volume. Finally, authors analyzed the efficiency loss breakdown of a previous pump design by using the developed method. According to the analysis, the major loss factor was reduction in effective displacement volume due to the dead volume of the pump chamber. This effect becomes stronger under high pressure. Based on this result, authors suggest a new low-dead-volume pump chamber design. Authors predict that the new design can maintain volumetric efficiency over 60% up to 30MPa delivery pressure.
机译:最近高压汽油泵的趋势正在增加出口压力。增加该压力的最重要的主题之一是提高体积效率。因此,本研究的目的是量化效率损失因素的分解,并提出了一种提高体积效率的新设计。作者开发了一种通过使用1D流体压力模拟结果来量化高压汽油泵效率损失击穿的方法,并对敏感性进行评估实验。作者将泵运动分成三个阶段;吸力,压缩和交付。然后作者调查了每个阶段的损失因子。结果,作者获得了预测最终输出量的等式。等式由限制输出量和其他类型的泄漏量组成。限制输出体积由吸入泵室的体积,输出压力,泵室的死体积和位移量计算。最后,作者通过使用开发的方法分析了先前泵设计的效率损失故障。根据分析,由于泵室的蒸馏量,主要损耗因子降低了有效的位移量。这种效果在高压下变得更强。基于此结果,作者提出了一种新的低死量泵室设计。作者预测新设计可以将体积效率保持在60%以上高达30MPa的输送压力。

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