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Kinetic theory derivation of transport equations for gases with internal energy

机译:内能量输送方程的动力学理论推导

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Multitemperature models are widely used in the aerospace community to model atmospheric entry flows. In this paper, we propose a general description of the internal energy excitation of a molecular gas in thermal nonequilibrium by distinguishing between slow and fast collisions. A multiscale Chapman-Enskog method is used to study thermalization and derive Euler equations of conservation of mass, momentum, translational energy and internal energy. As opposed to conventional perturbation methods, the fast collision operator is expanded in the small parameter used to define the threshold for the net energy for fast collisions. We show that the role of the fast collisions is to thermalize the translational and internal energy modes, whereas the role of the slow collisions is to contribute to the thermal relaxation of the translational and internal energy modes.
机译:多高型模型广泛用于航空航天界以模拟大气进入流动。在本文中,通过区分缓慢和快速碰撞,我们提出了热非预测中的分子气体内部能量激发的一般描述。 MultiScale Chapman-Enskog方法用于研究质量,动量,平移能源和内部能量守恒的热化和衍生欧拉方程。与传统的扰动方法相反,快速碰撞运算符在用于定义快速冲突的净能量的阈值的小参数中扩展。我们表明快速碰撞的作用是热化平移和内部能量模式,而缓慢碰撞的作用是有助于转换和内部能量模式的热松弛。

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