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Travelling waves in a mixture of gases with bimolecular reversible reactions

机译:混合气体中的行波具有双分子可逆反应

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Starting from the kinetic approach for a mixture of reacting gases whose particles interact through elastic scattering and a bimolecular reversible chemical reaction, the equations that govern the dynamics of the system are obtained by means of the relevant Boltzmann-like equation. Conservation laws are considered. Fluid dynamic approximations are used at the Euler level to obtain a close set of PDEs for six unknown macroscopic fields. The dispersion relation of the mixture of reacting gases is explicitly derived in the homogeneous equilibrium state. A set of ODE that governs the propagation of a plane travelling wave is obtained using the Galilei invariance. After numerical integration some solutions, including the well-known Maxwellian and the hard spheres cases, are found for various meaningful interaction laws. The main macroscopic observables for the gas mixture such as the drift velocity, temperature, total density, pressure and its chemical composition are shown. (C) 2003 Elsevier B.V. All rights reserved.
机译:从动力学方法开始,反应气体的混合物通过弹性散射和双分子可逆化学反应进行相互作用,然后通过相关的玻尔兹曼式方程获得控制系统动力学的方程式。考虑到保护法。在欧拉水平上使用流体动力学近似来为六个未知的宏观领域获得一组接近的PDE。反应气体混合物的弥散关系是在均匀平衡状态下明确得出的。使用Galilei不变性获得了一组控制平面行波传播的ODE。在进行数值积分后,找到了各种解决方案,其中包括著名的麦克斯韦方程组和硬球案例,它们可以用于各种有意义的相互作用定律。显示了气体混合物的主要宏观可观测值,例如漂移速度,温度,总密度,压力及其化学成分。 (C)2003 Elsevier B.V.保留所有权利。

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