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首页> 外文期刊>International journal of engine research >Calibration strategy of diesel-fuel spray atomization models using a design of experiment method
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Calibration strategy of diesel-fuel spray atomization models using a design of experiment method

机译:实验方法设计的柴油机喷雾雾化模型标定策略

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摘要

The Reitz and Diwakar and the KHRT atomization models are widely used for high-pressure diesel-fuel spray. The constants in both models must be calibrated to correctly predict the injection process based on the nozzle geometry, injection conditions, and fuel. Calibration can be significantly time-consuming given the four constants in both models. This paper suggests a strategy to assess the impact of models' constants on spray tip penetration and mean droplet-diameter predictions on a reference case, with an injection pressure of 700 bar, to characterize the influence of the atomization model's calibration. The assessment used a design of experiment method (DOE), which demonstrated the important interaction between constants on the results. Obtained calibrations were used for comparing the models' performances qualitatively and quantitatively by accounting for spray and air-entrainment characteristics. Both models gave similar results, but the KHRT model yielded a better spray shape. Finally, based on DOE results, a method is proposed to modify the model's constants for higher pressures (900 and 1300 bar).
机译:Reitz和Diwakar以及KHRT雾化模型被广泛用于高压柴油喷雾。必须对两个模型中的常数进行校准,以根据喷嘴的几何形状,喷射条件和燃料正确预测喷射过程。给定两个模型中的四个常数,校准可能会非常耗时。本文提出了一种策略,用于评估模型常数对喷头穿透的影响以及在参考压力为700 bar的情况下对参考案例的平均液滴直径预测的影响,以表征雾化模型校准的影响。评估使用实验方法(DOE)设计,该方法证明了常数之间在结果上的重要相互作用。通过考虑喷雾和夹带空气的特征,使用获得的标定来定性和定量比较模型的性能。两种模型都给出了相似的结果,但是KHRT模型产生了更好的喷雾形状。最后,基于DOE结果,提出了一种方法来修改较高压力(900和1300 bar)的模型常数。

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