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A generalized Bhatnagar-Gross-Krook model for nonequilibrium flows

机译:非平衡流动的广义Bhatnagar-Gross-Krook模型

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The Bhatnagar-Gross-Krook (BGK) model approximates the collision term of the Boltzmann equation by a single relaxation process from a nonequilibrium state to an equilibrium state. From the BGK model, the Navier-Stokes, Burnett, and Super-Burnett equations can be derived. However, the success of these derived macroscopic equations in the description of highly nonequilibrium flow is limited. In order to extend the validity of the BGK model to cope with complicated physical relaxation processes, we propose a generalized BGK (GBGK) model, where the gas distribution function settles to an equilibrium state through multiple particle collisional processes. The GBGK model can be used to capture the transitional, rotational, and vibrational nonequilibrium flow phenomena. More importantly, it may provide a theoretical framework to derive new macroscopic governing equations which are valid in the near continuum flow regime. (c) 2008 American Institute of Physics.
机译:Bhatnagar-Gross-Krook(BGK)模型通过一个从非平衡状态到平衡状态的松弛过程来近似Boltzmann方程的碰撞项。从BGK模型可以得出Navier-Stokes,Burnett和Super-Burnett方程。但是,这些导出的宏观方程式在描述高度非平衡流方面的成功是有限的。为了扩展BGK模型处理复杂的物理弛豫过程的有效性,我们提出了一种广义的BGK(GBGK)模型,其中气体分布函数通过多个粒子碰撞过程沉降到平衡状态。 GBGK模型可用于捕获过渡,旋转和振动的非平衡流动现象。更重要的是,它可以提供一个理论框架来推导在近乎连续的流动状态下有效的新的宏观控制方程。 (c)2008年美国物理研究所。

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