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首页> 外文期刊>Journal of Energy Engineering >Ignition-Characteristic Research of the Diesel Fuel in Combustion Vessel Simulated Diesel Engine Cold Start Condition
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Ignition-Characteristic Research of the Diesel Fuel in Combustion Vessel Simulated Diesel Engine Cold Start Condition

机译:内燃机模拟柴油机冷启动条件下柴油燃料的点火特性研究

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The initial ignition characteristic of fuel spray in a diesel engine is of great significance in the cold start problem. In this paper, the constant volume combustion vessel was applied to simulate the practical diesel engine condition near the end of the compression stroke and investigate the autoignition threshold temperature and other ignition characteristics for the fuel spray such as ignition delay time and initial ignition location. First, the influence of the ambient temperature and the ambient density in the vessel on ignition delay time, initial ignition location, and fuel mixture autoignition threshold temperature was researched. Then, the influence of fuel injection pressure and the plate surface temperature on ignition delay time and initial ignition location were also investigated in this paper. The results have shown that the autoignition threshold temperature was approximately 803K for the fuel spray in the combustion vessel, which simulated the practical diesel engine condition and the ignition delay time for both free jet and impinging jet increasing with the ambient temperature and the ambient density decreasing, respectively. The experimental map has also been developed to show the zone where initial ignition would occur with the different ambient temperatures and the ambient densities for the diesel fuel; the change of the injection pressure has no obvious influence on ignition delay time, but it reduces ignition success rate. The ignition delay time becomes longer as the plate surface temperature reduces and the variation rate of ignition delay time differs greatly in different temperature zones.
机译:柴油机中燃料喷雾的初始点火特性对冷启动问题具有重要意义。在本文中,将恒定容积的燃烧容器用于模拟压缩冲程即将结束时的实际柴油发动机工况,并研究自燃阈值温度和燃油喷雾的其他点火特性,例如点火延迟时间和初始点火位置。首先,研究了容器内环境温度和环境密度对点火延迟时间,初始点火位置和燃料混合物自燃阈值温度的影响。然后,还研究了燃料喷射压力和板表面温度对点火延迟时间和初始点火位置的影响。结果表明,燃烧容器中燃料喷雾的自燃阈值温度约为803K,模拟了实际柴油机工况,自由喷射和冲击喷射的点火延迟时间随环境温度的升高和环境密度的降低而增加。 , 分别。还绘制了实验图,以显示在不同的环境温度和柴油燃料的环境密度下会发生初始点火的区域。喷射压力的变化对点火延迟时间没有明显影响,但会降低点火成功率。随着板表面温度降低,点火延迟时间变得更长,并且点火延迟时间的变化率在不同温度区域中差异很大。

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