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首页> 外文期刊>MATEC Web of Conferences >A Study on the Influence of Fuel Pipe on Fuel Injection Characteristics of Each Nozzle Hole in Diesel Injector
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A Study on the Influence of Fuel Pipe on Fuel Injection Characteristics of Each Nozzle Hole in Diesel Injector

机译:燃油管对柴油机每个喷油嘴喷油特性的影响研究

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摘要

The inner diameter of high pressure fuel pipe has a significant effect on the fuel injection process and the performance of a diesel engine. The spray impact force of each nozzle hole of a conventional injection system of pump-line-nozzle for diesel engine (based on the spray momentum flux) and the injection pressure (on a fuel injection pump test rig) were measured. With varying fuel injection quantities and pump speed, the effects of the inner diameter of the high pressure fuel pipe on fuel injection process and the fuel injection characteristics of each nozzle hole were analyzed. It was noted from experimental results that the fuel injection pressure changes with variations in the inner diameter of the high pressure fuel pipe and also the injection duration gradually increases with increase in the inner diameter. At low injection pump speed, even with the same geometric fuel deliver rate, the injection duration also increases gradually. Due to throttling effect and reduction in injection pressure, the fuel injection quantities of the injection nozzle were relatively minimal when the inner diameters of the high pressure fuel pipe were respectively small and large. The optimum injection pipe inner diameter for the right quantity for fuel injection falls between the two cases (between small and large). In addition, the injection rate of each nozzle hole increases with the decrease in angle between the needle axis and each of the nozzle hole axis. The fuel injection quantity of each nozzle hole increases while their relative difference decreases with increasing pump speed.
机译:高压燃油管的内径对燃油喷射过程和柴油发动机的性能有重大影响。测量了传统的柴油机泵管路喷嘴喷射系统的每个喷嘴孔的喷射冲击力(基于喷射动量)和喷射压力(在燃油喷射泵试验台上)。通过改变燃油喷射量和泵速,分析了高压燃油管内径对燃油喷射过程的影响以及每个喷嘴孔的燃油喷射特性。从实验结果可以看出,燃料喷射压力随着高压燃料管的内径的变化而变化,并且喷射持续时间随着内径的增加而逐渐增加。在低喷射泵转速下,即使在相同的几何燃料输送速率下,喷射持续时间也会逐渐增加。由于节流作用和喷射压力的降低,当高压燃料管的内径分别较小和较大时,喷嘴的燃料喷射量相对较小。在两种情况下(大小不等),在正确的燃油喷射量下,最佳喷射管内径是合适的。另外,每个喷嘴孔的喷射率随着针轴线与每个喷嘴孔轴线之间的角度的减小而增加。每个喷嘴孔的燃料喷射量增加,而它们的相对差随着泵速的增加而减小。

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