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Quasi-classical trajectory-based non-equilibrium chemical reaction models for hypersonic air flows

机译:基于准古典轨迹的超声波空气流量的非平衡化学反应模型

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摘要

Phenomenological models, such as Park's widely used two temperature model, overpredict the reaction rate coefficients at vibrationally cold conditions and underpredict it at vibrationally hot conditions. To this end, two new chemical reaction models, the nonequilibrium total temperature (NETT) and nonequiibrium piecewise interpolation models for the continuum framework are presented. The focus is on matching the reaction rate coefficients calculated using a quasiclassical trajectory based dissociation cross section database. The NETT model is an intuitive model based on physical understanding of the reaction at a molecular level. A new nonequilibrium parameter and the use of total temperature in the exponential term of the Arrhenius fit ensure the NETT model has a simple and straightforward implementation. The efficacy of the new model was investigated for several equilibrium and nonequilibrium conditions in the form of heat bath simulations. Additionally, two-dimensional hypersonic flows around a flat blunt-body were simulated by employing various chemical reaction models to validate the new models using experimental shock tube data. Park's two temperature model predicted higher dissociation rates and a higher degree of dissociation leading to lower peak vibrational temperatures compared to those predicted by the new nonequilibrium models. Overall, the present work demonstrates that the new nonequilibrium models perform better than Park's two temperature model, especially in simulations with a high degree of nonequilibrium, particularly as observed in re-entry flows. Published under license by AIP Publishing.
机译:现象学模型,如公园的广泛使用的两个温度模型,过度造成振动冷条件下的反应速率系数,并在振动的热条件下造成欠款。为此,提出了两种新的化学反应模型,不符合连续框架的非化学反应模型,非预测总温度(Nett)和非分段分段内插模型。焦点是匹配使用基于拟卡斯科基轨迹的解离横截面数据库计算的反应速率系数。 Nett模型是基于对分子水平反应的物理理解的直观模型。 Arhenius适合指数期限的新非QuiBribrium参数和使用总温度确保Nett模型具有简单而直接的实现。研究了新模型的功效,以热浴模拟形式进行了几种平衡和非平衡条件。另外,通过采用各种化学反应模型来模拟扁平钝体周围的二维超声波流动使用实验冲击管数据来验证新模型。 Park的两个温度模型预测了更高的解离速率和更高程度的解离,导致较低的振动温度与新的非正式模型预测的那些相比较低。总体而言,目前的工作表明,新的非QuiBibrib模型比Park的两个温度模型更好,特别是在具有高度不足的模拟中,特别是在重新进入流动中观察到。通过AIP发布在许可证下发布。

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