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相关论文: Kinetic models of BGK type and their numerical int…

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The simulation of rarefied gas flow based on the Boltzmann equation is challenging, especially when the gas mixtures have disparate molecular masses. In this paper, a computationally tractable kinetic model is proposed for monatomic gas…

流体动力学 · 物理学 2024-03-12 Qi Li , Jianan Zeng , Lei Wu

In this paper, we propose a general framework to design asymptotic preserving schemes for the Boltzmann kinetic kinetic and related equations. Numerically solving these equations are challenging due to the nonlinear stiff collision (source)…

数值分析 · 数学 2015-05-13 Francis Filbet , S. Jin

Consistent BGK models for inert mixtures are compared, first in their kinetic behavior and then versus the hydrodynamic limits that can be derived in different collision-dominated regimes. The comparison is carried out both analytically and…

数学物理 · 物理学 2021-02-26 Sebastiano Boscarino , Seung Yeon Cho , Maria Groppi , Giovanni Russo

We study spatially non-homogeneous kinetic models for vehicular traffic flow. Classical formulations, as for instance the BGK equation, lead to unconditionally unstable solutions in the congested regime of traffic. We address this issue by…

物理与社会 · 物理学 2019-07-22 Michael Herty , Gabriella Puppo , Sebastiano Roncoroni , Giuseppe Visconti

Despite the development of an extensive toolbox of multi-scale rarefied flow simulators, such simulations remain challenging due to the significant disparity of collisional and macroscopic spatio-temporal scales. Our study offers a novel…

流体动力学 · 物理学 2022-08-17 Marcel Pfeiffer , Félix Garmirian , M. Hossein Gorji

We investigate numerically a recent BGK-type model for a multi-component mixture of monatomic gases, undergoing a reversible bimolecular chemical reaction. The model replaces each collisional term of the Boltzmann equation with a relaxation…

统计力学 · 物理学 2026-02-23 Giorgio Martalò , Ana Jacinta Soares , Romina Travaglini

We propose two models of the Boltzmann equation (BGK and Fokker-Planck models) for rarefied flows of diatomic gases in vibrational non-equilibrium. These models take into account the discrete repartition of vibration energy modes, which is…

经典物理 · 物理学 2020-07-16 J. Mathiaud , Luc Mieussens

We propose a BGK-type kinetic model for relativistic reactive gas mixtures. This model serves as a computationally tractable yet physically consistent alternative to the corresponding Boltzmann equation. The relaxation operator is…

偏微分方程分析 · 数学 2025-09-03 Seung-Yeon Cho , Byung-Hoon Hwang , Myeong-Su Lee , Seok-Bae Yun

We consider the socalled Bathnagar-Gross-Krook (BGK) model, an approximation of the Boltzmann equation, describing the time evolution of a single momoatomic rarefied gas and satisfying the same two main properties (conservation properties…

偏微分方程分析 · 数学 2021-10-26 Marlies Pirner

Kinetic models for polyatomic gases have two temperatures for the two different types of degrees of freedom, the translational and the internal energy degrees of freedom. Therefore, in the case of BGK models one expects two types of…

偏微分方程分析 · 数学 2018-10-23 Marlies Pirner

In this article we focus on kinetic equations for gas mixtures since in applications one often has to deal with mixtures instead of a single gas. In particular we consider an approximation of the Boltzmann equation, the…

偏微分方程分析 · 数学 2022-03-30 Marlies Pirner , Sandra Warnecke

We consider a kinetic model for a two component gas mixture without chemical reactions. Our goal is to study hypocoercivity for the linearized BGK model for gas mixtures in continuous phase space. By constructing an entropy functional, we…

偏微分方程分析 · 数学 2020-01-15 Liu Liu , Marlies Pirner

The non-equilibrium gas dynamics is described by the Boltzmann equation, which can be solved numerically through the deterministic and stochastic methods. Due to the complicated collision term of the Boltzmann equation, many kinetic…

计算物理 · 物理学 2021-02-03 Xiaocong Xu , Yipei Chen , Kun Xu

Unlike the case for classical particles, the literature on BGK type models for relativistic gas mixture is extremely limited. There are a few results %\cite{Kremer,Kremer3,KP} in which such relativistic BGK models for gas mixture are…

偏微分方程分析 · 数学 2023-06-09 Byung-Hoon Hwang , Myeong-Su Lee , Seok-Bae Yun

In this paper, we first extend the micro-macro decomposition method for multiscale kinetic equations from the BGK model to general collisional kinetic equations, including the Boltzmann and the Fokker-Planck Landau equations. The main idea…

数值分析 · 数学 2019-02-20 Irene M. Gamba , Shi Jin , Liu Liu

We propose a new kinetic BGK-type model for a mixture of four monatomic gases, undergoing a bimolecular and reversible chemical reaction. The elastic and reactive interactions are described separately by distinct relaxation terms and the…

统计力学 · 物理学 2026-01-07 Giorgio Martalò , Ana Jacinta Soares , Romina Travaglini

Two kinetic models are proposed for high-temperature rarefied (or non-equilibrium) gas flows with radiation. One of the models uses the Boltzmann collision operator to model the translational motion of gas molecules, which has the ability…

流体动力学 · 物理学 2023-06-28 Qi Li , Jianan Zeng , Lei Wu

We present a numerical comparison between two standard finite volume schemes and a discontinuous Galerkin method applied to the BGK equation of rarefied gas dynamics. We pay a particular attention to the numerical boundary conditions in…

数值分析 · 数学 2020-03-13 Céline Baranger , Nicolas Hérouard , Julien Mathiaud , Luc Mieussens

A kinetic model is proposed for rarefied flows of molecular gas with rotational and temperature-dependent vibrational degrees of freedom. The model reduces to the Boltzmann equation for monatomic gas when the energy exchange between the…

流体动力学 · 物理学 2022-01-19 Qi Li , Lei Wu

Multi-species BGK models describe the dynamics of rarefied gases with constituent particles of different elements or compounds with potentially non-trivial velocity distributions. In this paper, moment equations for the bulk velocities,…

数学物理 · 物理学 2023-10-20 Evan Habbershaw , Ryan S. Glasby , Jeffrey R. Haack , Cory D. Hauck , Steven M. Wise
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