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Effects of Nozzle Diameter on Diesel Spray Flames: A numerical study using an Eulerian Stochastic Field Method

机译:喷嘴直径对柴油喷雾火焰的影响:使用欧拉随机现场方法的数值研究

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The present numerical study aims to assess the performance of an Eulerian Stochastic Field (ESF) model in simulating spray flames produced by three fuel injectors with different nozzle diameters of 100 um, 180 μm and 363 μm. A comparison to the measurements shows that although the simulated ignition delay times are consistently overestimated, the relative differences remain below 28%. Furthermore, the change of the averaged pressure rise with respect to the variation of nozzle diameter is captured by the model. The simulated flame lift-off lengths also agree with the measurements, with a maximum relative difference of 13%. The spray flame produced by a larger nozzle diameter has a fuel-richer premixed core region despite the longer lift-of length, indicating that the higher fueling rate used with the larger nozzle diameter is a more dominating factor than the lift-off length is in influencing the air entrainment into the upstream of the spray flames. In addition, the simulated normalised flame lengths are found to decrease when the nozzle diameters increase. These predictions are in good qualitative agreement with the experimental observation. This work proves that the ESF model can serve as an important tool for the simulation of spray flames in marine diesel engines, where fuel injectors with different nozzle diameters are applied for pilot and main injections.
机译:本数值研究旨在评估欧拉随机场(ESF)模型在模拟三种燃料喷射器产生的喷雾火焰中的性能,不同的喷嘴直径为100μm,180μm和363μm。与测量的比较表明,尽管模拟点火延迟时间始终估计,但相对差异仍然低于28%。此外,通过模型捕获相对于喷嘴直径的变化的平均压力升高的变化。模拟火焰升降长度也同意测量值,最大相对差异为13%。通过较大喷嘴直径产生的喷雾火焰尽管升高长度,但是具有较长的长度,表明与较大喷嘴直径使用的较高的加油率是比剥离长度更高的主导因子影响空气夹带到喷雾火焰的上游。另外,发现喷嘴直径增加时,发现模拟的归一化火焰长度降低。这些预测与实验观察良好的定性协议。这项工作证明,ESF模型可以作为船舶柴油发动机中喷雾火焰模拟的重要工具,其中施加具有不同喷嘴直径的燃料喷射器用于飞行员和主要喷射。

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