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Thermochemical non-equilibrium effects on aerothermodynamic prediction of laminar double-cone flow

机译:热化学非平衡影响层压型双锥流动的空气动力学预测

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摘要

Hypersonic non-equilibrium air flows over a laminar double-cone configuration are numerically investigated. In this paper, the effects of thermochemical non-equilibrium gas, chemical non-equilibrium gas, and thermally perfect gas models on the prediction of the wall-surface heat transfer and pressure are investigated. Comparing to the high-enthalpy experimental data, the results of simulations indicate that all models have a similar tendency, and underpredict the length of the separation region, while the heat transfer peaks are overpredicted. The experimental data for surface pressure and heat transfer is insensitive to the choice of the thermally perfect gas model and non-equilibrium thermochemistry models. Quantitatively, the thermochemical non-equilibrium gas and thermally perfect gas models predict the same separation and reattachment locations within the uncertainty in the simulation, but the chemical non-equilibrium gas model predicts a smaller separation region.
机译:在数值上研究了超声波非平衡空气通过层流双锥形配置。 本文研究了热化学非平衡气体,化学非平衡气体和热完美气体模型对壁面传热和压力预测的影响。 与高焓实验数据相比,模拟结果表明,所有模型具有相似的趋势,并且欠分离区域的长度,而传热峰值呈现。 表面压力和传热的实验数据对热完美的气体模型和非平衡热化学模型的选择不敏感。 定量地,热化学非平衡气体和热完美的气体模型在模拟中的不确定性内预测相同的分离和重新定位位置,但是化学非平衡气体模型预测了较小的分离区域。

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