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Novel Approach for Modeling CO_2 Non-equilibrium Radiation: Application to Wake Flows

机译:CO_2非平衡辐射建模的新方法:在尾流中的应用

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This paper presents a new unified physics-based framework for describing non-equilibrium thermochemistry and radiative heating in CO_2 flows. The use of the coarse grain approach, which involves grouping internal states together into macroscopic bins, allows a dramatic reduction in computational costs while retaining key information from the full state-to-state model. The accuracy of the current model reduction method is further improved by utilizing state-specific kinetics to draw out an optimal strategy for dividing states into bins. In similar fashion, an efficient spectral model is developed from existing comprehensive state-specific radiation databases. This approach combined with finite-volume based discretization for radiative transfer equations allows on-the-fly radiation calculations and a two-way coupling with an unsteady flowfield. The new simulation framework is used to analyze flow dynamics and the radiation field during atmospheric entry for the Mars 2020 mission. Predictions for the forebody region are largely similar for both the reduced-order state-to-state and conventional multi-temperature models. However, the two sets of simulations yield significantly different estimates for the CO_2 vibrational state distribution and infrared radiation in the backshell region, especially near the shoulder and along the rear stagnation line.
机译:本文提出了一个新的基于物理学的统一框架,用于描述CO_2流中的非平衡热化学和辐射加热。粗粒度方法的使用涉及将内部状态分组到宏观的容器中,从而可以显着降低计算成本,同时保留来自完整状态模型的关键信息。当前模型简化方法的准确性通过利用特定于状态的动力学得出将状态划分为仓的最佳策略而得到进一步提高。以类似的方式,从现有的全面的特定于状态的辐射数据库中开发出一种有效的光谱模型。这种方法与基于有限体积的辐射传递方程离散化相结合,可以进行实时辐射计算,并且可以与不稳定的流场进行双向耦合。新的模拟框架用于分析火星2020任务进入大气期间的流动动力学和辐射场。对于降序状态到状态模型和常规的多温度模型,前体区域的预测在很大程度上相似。但是,这两组模拟对后壳区域(尤其是在肩膀附近和沿后停滞线)的CO_2振动状态分布和红外辐射产生了明显不同的估计。

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