Lattice Boltzmann solution of the transient Boltzmann transport equation in radiative and neutron transport

Yahui Wang, Liming Yan, and Yu Ma
Phys. Rev. E 95, 063313 – Published 23 June 2017

Abstract

Applications of the transient Boltzmann transport equation (BTE) have undergone much investigation, such as radiative heat transfer and neutron transport. This paper provides a lattice Boltzmann model to efficiently resolve the multidimensional transient BTE. For a higher angular resolution, enough transport directions are considered while the transient BTE in each direction is treated as a conservation law equation and solved independently. Both macroscopic equations recovered from a Chapman-Enskog expansion and simulated results of typical benchmark problems show not only the second-order accuracy but also the flexibility and applicability of the proposed lattice Boltzmann model. This approach may contribute a powerful technique for the parallel simulation of large-scale engineering and some alternative perspectives for solving the nonlinear transport problem further.

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  • Received 3 January 2017

DOI:https://doi.org/10.1103/PhysRevE.95.063313

©2017 American Physical Society

Physics Subject Headings (PhySH)

Nuclear PhysicsAtomic, Molecular & OpticalInterdisciplinary PhysicsParticles & Fields

Authors & Affiliations

Yahui Wang, Liming Yan, and Yu Ma*

  • School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, People's Republic of China

  • *mayu@hit.edu.cn

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Issue

Vol. 95, Iss. 6 — June 2017

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