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Radiative transfer in gases under thermal and chemical nonequilibrium conditions: Application to earth atmospheric re-entry

机译:在热和化学非平衡条件下气体中的辐射传递:应用于地球大气再进入

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摘要

It is well known that the Kirchhoffs law, connecting emission to absorption through the Planck's function, is no more valid when the medium is not at local thermal and chemical equilibrium. The aim of the present paper is to analyze the effects of this nonequilibrium on radiative transfer, and in particular, for atmospheric air re-entry applications. A general formulation is proposed in the framework of multi-temperature description of the thermodynamic state of the gas mixture. Application of this model to simulate an earth re-entry experiment first leads to a reasonable agreement and then outlines important effects of chemical nonequilibrium, especially through bound-free transitions. (C) 2007 Elsevier Ltd. All rights reserved.
机译:众所周知,当介质不处于局部热化学平衡时,通过普朗克函数将发射与吸收联系起来的基尔霍夫定律不再有效。本文的目的是分析这种不平衡对辐射传递的影响,特别是对于大气再入应用。在对气体混合物的热力学状态进行多温度描述的框架内,提出了一种通用的公式。该模型在模拟地球再入实验中的应用首先导致合理的协议,然后概述了化学非平衡的重要影响,尤其是通过无界跃迁。 (C)2007 Elsevier Ltd.保留所有权利。

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