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The Influence of Compression Ratio on Indicated Emissions and Fuel Economy Responses to Input Variables for a D. I Diesel Engine Combustion System

机译:压缩比对D.I柴油机燃烧系统的输入变量的指示排放和燃料经济性的影响

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The effect of compression ratio on sensitivity to changes in start of injection and air-fuel ratio has been investigated on a single-cylinder DI diesel engine at fixed low and medium speeds and loads. Compression ratio was set to 17.9:1 or 13.7:1 by using pistons with different bowl sizes. Injection timing and air-to-fuel ratio were swept around a nominal map point at which gross IMEP and NO_x values were matched for the two compression ratios. It was found that CO, HC and ISFC were higher at low compression ratio, but the soot/NO_x trade-off improved and this could be exploited to reduce the fuel economy penalty. Sensitivity to inputs is generally similar, but high compression ratio tended to have steeper response gradients. Reducing compression ratio to 13.7 gave rise to a marked degradation of performance at light load, producing high CO emissions and a fall in combustion efficiency. This could be eased by reducing rail pressure, but the advantage in smoke emission was lost.
机译:在固定的低功率和载荷和负载下,在单缸DI柴油发动机上研究了压缩比对注射开始和空燃比的变化的敏感性。通过使用具有不同碗尺寸的活塞,压缩比设定为17.9:1或13.7:1。喷射定时和空气到燃料比围绕着标称地图点扫描,其毛的IMEP和NO_X值与两个压缩比匹配。发现CO,HC和ISFC处于低压缩比,但烟灰/诺克斯权衡改进,这可以利用这可以降低燃油经济性罚款。对输入的敏感性通常是相似的,但高压缩比往往具有较陡的响应梯度。将压缩比降低至13.7,产生了轻量负荷的显着降解,产生高CO排放和燃烧效率下降。这可以通过减少轨道压力来缓解,但烟雾排放的优势丢失。

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