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DSMC-CFD Comparison of a High Altitude, Hypersonic Reentry Flow Using the Mott-Smith Model

机译:使用Mott-Smith模型的高海拔高度,超音速再入流的DSMC-CFD比较

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Stardust reentry flows have been simulated at 80 km altitude, 12.8 km/s, using the direct simulation Monte Carlo (DSMC) and computational fluid dynamics (CFD). Neutral and ionization processes among neutral air species, as well as five ionic species and electrons were considered in the DSMC flowfield modeling using the ion-averaged velocity model to maintain charge-neutrality. In CFD, two electron temperature models were compared, and it was found that the degree of ionization (DOI) is sensitive to the electron temperature model. At 80 km, the DOI predicted by DSMC was found to be approximately 3 %, but in CFD, the DOI is greater than 20 % for the case of Te Ttr and 9 % for the case of Te = Tvib Therefore, compared to the DSMC solution, the assumption of Te = Tvib is preferable in CFD. Using the Mott-Smith (M-S) model, good agreement was obtained between the analytical bimodal distribution functions and DSMC velocity distributions. An effective temperature correction in the relaxation and chemical reaction models using the M-S model was developed in CFD, and the model reduced the continuum breakdown discrepancy between DSMC and CFD inside the shock in terms of DOI and temperatures. With the M-S model, the DOI for the case of Te T5,ib in CFD is decreased by approximately 3 %.
机译:使用直接仿真蒙特卡罗(DSMC)和计算流体动力学(CFD),已经在80公里的高度,12.8 km / s处模拟了STARDUST ReEntry流量。使用离子平均速度模型在DSMC流场建模中考虑中性空气物种中的中性和电离过程,以及五种离子物质和电子,以维持电荷中立。在CFD中,比较了两个电子温度模型,发现电离程度(DOI)对电子温度模型敏感。在80公里处,发现DSMC预测的DOI约为3%,但在CFD中,DOI对TE TTR的情况大于20%,而TE = TVIB的情况,与DSMC相比,TE = TVIB的情况为9%解决方案,在CFD中优选Te = TVIB的假设。使用Mott-Smith(M-S)模型,在分析双峰分布函数和DSMC速度分布之间获得了良好的一致性。在CFD中开发了使用M-S型号的松弛和化学反应模型中的有效温度校正,并且该模型在DII和温度方面的冲击内降低了DSMC和CFD之间的连续体击穿差异。利用M-S模型,CFD中TE T5,IB的情况的DOI减少了大约3%。

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