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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 66, 2014 - Issue 6
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Original Articles

A Compressible Thermal Lattice Boltzmann Model with Factorization Symmetry

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Pages 544-562 | Received 24 Jan 2014, Accepted 07 Mar 2014, Published online: 23 Oct 2014
 

Abstract

A fully compressible multispeed lattice Boltzmann model is introduced and numerically demonstrated to simulate compressible thermal flow. The equilibrium distribution functions are derived by a nonperturbative algebraic theory in coordinate symmetry product form to avoid complex polynomial expansion of the Maxwellian function and Gauss-Hermite quadrature. An important characteristic of the proposed model is that it can be easily extendied to a multidimentional model with factorization symmetry. For compressible flows, Sod shock tube, Couette flow, and high-Mach double-reflection compressible flow are carried out to validate the present model for compressible flow and heat transfer. Numerical results are in excellent agreement with the theoretical solutions of fluid flows.

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