Lattice Boltzmann Simulation Studies Open access

Discrete Boltzmann model at Burnett level for compressible multicomponent flows under external forces

Demei Li, Huilin Lai, Chuandong Lin, S.S. Chen

arXiv (Cornell University) | Jul 22, 2026

Abstract

Abstract

This work extends the Burnett-level discrete Boltzmann model (DBM) from single-component to multicomponent compressible flows under external forces, building on the fundamental framework of the high-precision discrete kinetic method. A high-isotropy 25-discrete-velocity set is adopted to guarantee numerical stability and spatial symmetry, while a rigorous moment-matching strategy is developed to construct the equilibrium distribution function and external force term. Different from the single-component counterpart, the present model intrinsically incorporates interspecies mass diffusion effects and multi-component thermodynamic nonequilibrium behaviors, which are critical for complex compressible multicomponent systems. The Chapman--Enskog expansion verifies that the proposed model can exactly recover the Burnett-level governing equations for forced multicomponent compressible flows in the continuum limit. Five canonical benchmark cases, including multicomponent mass diffusion, compressible Sod shock tube, thermal Couette flow, Kelvin--Helmholtz instability, and Rayleigh--Taylor instability, are systematically performed. Numerical results demonstrate that the developed Burnett-level multicomponent DBM achieves high accuracy and robustness in capturing both hydrodynamic evolution and multicomponent nonequilibrium characteristics under external forces.

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Authors

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Demei Li

first | ORCID 0000-0003-3726-9815

Huilin Lai

middle

Chuandong Lin

middle

S.S. Chen

last

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Citation

BibTeX

@article{Li2026Discrete,
  title = {Discrete Boltzmann model at Burnett level for compressible multicomponent flows under external forces},
  author = {Demei Li and Huilin Lai and Chuandong Lin and S.S. Chen},
  journal = {arXiv (Cornell University)},
  year = {2026},
  url = {https://arxiv.org/abs/2607.20029}
}

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