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Physicochemical model of hypersonic rarefied gas flow past bodies

机译:高超声速稀薄气体流经人体的理化模型

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摘要

The effect of the internal molecular degrees of freedom on the flow field and heat transfer in hypersonic rarefied gas flow past a cylinder or sphere is investigated using the direct statistical simulation (Monte-Carlo) method. The variable-diameter rough spherical molecule model (VRS-model) is generalized to include the case of energy exchange between the translational and vibrational degrees of freedom. The interaction between diatomic molecules with allowance for vibrational degrees of freedom is simulated as the interaction of classical or quantum-mechanical harmonic and anharmonic oscillators in the external force approximation. A model of the dissociation of a diatomic gas is proposed.
机译:使用直接统计模拟(Monte-Carlo)方法研究了内部分子自由度对流过圆柱体或球体的高超音速稀薄气流中流场和传热的影响。直径可变的粗糙球形分子模型(VRS-model)可以概括为包括平移和振动自由度之间的能量交换情况。在外力逼近中,将经典振动或量子力学谐波与非谐振荡器之间的相互作用模拟为允许振动自由度的双原子分子之间的相互作用。提出了双原子气体离解的模型。

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