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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermochemical nonequilibrium modeling of oxygen in hypersonic air flows
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Thermochemical nonequilibrium modeling of oxygen in hypersonic air flows

机译:高清气流氧气的热化学缺乏建模

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摘要

The thermochemical nonequilibrium model for oxygen, O_2, in collisions with atmospheric gas species, is modified in the present work. The vibrational relaxation time with high temperature corrections, dissociation reaction rates, equilibrium constants for the reverse reactions, the vibrational energy loss ratio due to chemical reaction, and the collision integrals for nonequilibrium transport properties are proposed to describe the thermochemical nonequilibrium of O_2. The proposed set of thermochemical nonequilibrium parameters for O_2 successfully reproduces existing shock-tube experimental data and the flight and ground experimental data of the ELECTRE vehicle, orbital reentry experiments (OREX) flight modules, and double-cone geometry in the LENS-XX facility. In post-shock and hypersonic flow calculations, it is found that the vibrational relaxation and coupled chemical reactions calculated using the present parameters occur more slowly than using the previous parameters. The delayed nonequilibrium chemical reactions contribute to the extension of the shock stand-off distance, and drastically change the reverse reaction near the wall of the hypersonic vehicle.
机译:在本作工作中修饰了氧气Ox2的热化学非化学模型O_2,在与大气气体物种的碰撞中。提出了具有高温校正,解离反应速率的振动弛豫时间,反应的平衡常数,因此提出了由于化学反应引起的振动能量损失率,以及用于非挤出性转运性能的碰撞积分,描述O_2的热化学非核状。 O_2的提出的热化学非预测参数集成功地再现了现有的冲击管实验数据和电气车辆,轨道再入实验(OREX)飞行模块的飞行和地面实验数据,以及晶状体XX设施的双锥形几何形状。在休克后和过度的流量计算中,发现使用本参数计算的振动松弛和耦合的化学反应比使用先前的参数更慢地发生。延迟的非平衡化学反应有助于休克脱扣距离的延伸,并且大大改变了超声波载体壁附近的反应。

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