首页> 外文会议>ASME Internal Combustion Engine Division technical conference >ASSESSMENT OF DIFFERENT CAVITATION MODELS IN MIXTURE AND EULERIAN FRAMEWORK FOR TWO-PHASE FLOW IN DIESEL INJECTORS
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ASSESSMENT OF DIFFERENT CAVITATION MODELS IN MIXTURE AND EULERIAN FRAMEWORK FOR TWO-PHASE FLOW IN DIESEL INJECTORS

机译:柴油机两相流混合和欧拉框架中不同空化模型的评估

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A comparative study using different cavitation models in mixture and Eulerian framework is carried out for the analysis of two-phase flows in diesel injectors. Three different cavitation models are investigated here: recently developed modified single-fluid, Schnerr-Sauer and Zwart-Gerber-Belamri models. The last two models have been implemented in both mixture and Eulerian framework. The numerical predictions are compared both qualitatively and quantitatively with experimental results available in the literature. Qualitative assessments have been carried out with experimental images of two-phase flow in an optically accessible nozzle. Quantitative comparisons have been done with measured mass flow rates and velocity profiles. It appears that at low pressure differentials there can be considerable discrepancy in the predictions of the vapour distribution from the three models considered. The modified single-fluid approach turns out to be comparatively better with respect to the other two models. Implementation in mixture and Eulerian framework yields noticeable differences in the results because of the relative velocity of the two phases. Numerical experiments have been carried out with different two-phase turbulence modelling approaches, pressure-velocity coupling algorithms, gradient calculation methods and under-relaxation factors to assess the robustness of the models. Additionally comparisons have been carried out for conditions under high inlet pressure in an axisymmetric nozzle to understand the performance of the models under realistic operating conditions.
机译:利用混合物和欧拉骨架中的不同空化模型进行比较研究,用于分析柴油喷射器中的两相流量。此处调查了三种不同的空化模型:最近开发了改进的单液,Schnerr-Sauer和Zwart-Gerber-belamri型号。最后两种模型已经在混合和欧拉架中实施。定性和定量地与文献中可获得的实验结果进行定性和定量的数值预测。使用光学可接近喷嘴中的两相流的实验图像进行了定性评估。已经用测量的质量流量和速度谱完成了定量比较。看来,在低压差分中,在考虑的三种模型的蒸汽分布的预测中可以具有相当大的差异。对于其他两个模型,改进的单流体方法变得相对更好。混合物和欧拉骨架中的实施产生了由于两相的相对速度的结果产生明显的差异。使用不同的两相湍流建模方法,压力 - 耦合算法,梯度计算方法和松弛因素进行了数值实验,以评估模型的稳健性。另外,在轴对称喷嘴中的高入口压力下进行了比较,以了解在现实操作条件下模型的性能。

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