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Kinetic Theory of Reactive Gas Mixtures with Application to Combustion

机译:活性气体混合物的动力学理论及其在燃烧中的应用

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We consider a generalized Boltzmann equation valid for dilute, isotropic, polyatomic gas mixtures with chemical reactions. Depending on the ratio of characteristic times between reactive and inert collisions, various chemical regimes are obtained in the first order Enskog expansion and their compatibility with the Boltzmann H-theorem is investigated. We then review the mathematical structure of the transport linear systems resulting from a Galerkin approximation of the integral equations satisfied the species perturbed distribution functions. The multicomponent transport coefficients are written as convergent series and accurate approximate expression are obtained by truncation. Numerical results are presented for combustion applications including laminar flame propagation, counterflow flame extinction and multidimensional Bunsen flames.
机译:我们认为,广义的玻尔兹曼方程对具有化学反应的稀疏,各向同性,多原子的气体混合物有效。根据反应性反应和惰性反应之间特征时间的比率,以一阶Enskog展开获得各种化学形式,并研究它们与玻耳兹曼H定理的相容性。然后,我们回顾了由线性方程组的Galerkin近似得到的满足物种扰动分布函数的输运线性系统的数学结构。将多组分传输系数写为收敛级数,并通过截断获得准确的近似表达式。给出了燃烧应用的数值结果,包括层流火焰传播,逆流火焰熄灭和多维本生火焰。

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