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Simulation of Homogeneous Condensation of Ethanol in High Pressure Supersonic Nozzle Flows using BGK Condensation Model

机译:使用BGK缩合模型模拟高压超声喷嘴乙醇均匀凝结

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In the present work, we have simulated the homogeneous condensation flow of ethanol using the Bhatnagar-Gross-Krook (BGK) based condensation model for the experimental conditions of Wegener et al. [1]. In an earlier work carried out by Gallagher-Rogers et al. [2], it was found not possible to simulate the experimental conditions using the direct simulation Monte-Carlo (DSMC) based condensation model. In this work we use a statistical-BGK approach to model condensation and compare our simulated predictions of the point of condensation onset and the distribution of mass fraction along the nozzle centerline with experiments. The experiments provide data for different cases corresponding to varying amounts of ethanol concentration, compared to air, for total mixture pressures which remains mostly constant for all cases. Our numerical results show good agreement with the experiments, thus validating our BGK based condensation model for high pressure flow applications.
机译:在目前的工作中,我们使用基于Bhatnagar-Gross-Krook(BGK)的冷凝模拟乙醇的均匀冷凝流动用于Wegener等人的实验条件。 [1]。在allager-rogers等人进行的早期工作中。 [2],发现不可能使用基于直接仿真蒙特卡罗(DSMC)的冷凝模型来模拟实验条件。在这项工作中,我们使用统计-BGK方法来模拟冷凝,并比较我们的模拟预测,以及沿着喷嘴中心线与实验的沿喷嘴中心线的质量分配的模拟预测。该实验提供了与空气相比的不同量的乙醇浓度的不同案例的数据,用于全部对所有情况仍然恒定的总混合压力。我们的数值结果与实验表现出良好的一致性,从而验证了基于BGK的高压流动应用的冷凝模型。

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