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DSMC Simulation and Experimental Validation of Shock Interaction in Hypersonic Low Density Flow

机译:高超声速低密度流中冲击相互作用的DSMC模拟和实验验证

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摘要

Direct simulation Monte Carlo (DSMC) of shock interaction in hypersonic low density flow is developed. Three collision molecular models, including hard sphere (HS), variable hard sphere (VHS), and variable soft sphere (VSS), are employed in the DSMC study. The simulations of double-cone and Edney's type IV hypersonic shock interactions in low density flow are performed. Comparisons between DSMC and experimental data are conducted. Investigation of the double-cone hypersonic flow shows that three collision molecular models can predict the trend of pressure coefficient and the Stanton number. HS model shows the best agreement between DSMC simulation and experiment among three collision molecular models. Also, it shows that the agreement between DSMC and experiment is generally good for HS and VHS models in Edney's type IV shock interaction. However, it fails in the VSS model. Both double-cone and Edney's type IV shock interaction simulations show that the DSMC errors depend on the Knudsen number and the models employed for intermolecular interaction. With the increase in the Knudsen number, the DSMC error is decreased. The error is the smallest in HS compared with those in the VHS and VSS models. When the Knudsen number is in the level of 10−4, the DSMC errors, for pressure coefficient, the Stanton number, and the scale of interaction region, are controlled within 10%.
机译:建立了高超声速低密度流中冲击相互作用的直接模拟蒙特卡罗(DSMC)。 DSMC研究采用了三种碰撞分子模型,包括硬球(HS),可变硬球(VHS)和可变软球(VSS)。在低密度流动中进行了双锥和埃德尼IV型高超音速冲击相互作用的模拟。 DSMC与实验数据之间进行了比较。对双锥高超声速流的研究表明,三种碰撞分子模型可以预测压力系数和斯坦顿数的趋势。 HS模型显示了DSMC模拟与实验之间三个碰撞分子模型之间的最佳一致性。而且,它表明DSMC与实验之间的协议通常对于Edney IV型冲击相互作用中的HS和VHS模型而言是好的。但是,它在VSS模型中失败。双锥和Edney的IV型冲击相互作用仿真均表明DSMC误差取决于Knudsen数和分子间相互作用所使用的模型。随着Knudsen数的增加,DSMC误差减小。与VHS和VSS模型相比,HS中的误差最小。当Knudsen数在10 −4 时,压力系数,Stanton数和相互作用区域的范围的DSMC误差控制在10%以内。

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  • 期刊名称 other
  • 作者

    Hong Xiao; Yuhe Shang; Di Wu;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 732765
  • 总页数 10
  • 原文格式 PDF
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