Numerical simulation for the motions of nonautonomous solitary waves of a variable-coefficient forced Burgers equation via the lattice Boltzmann method

12/03/2022
by   Qingfeng Guan, et al.
0

The lattice Boltzmann method (LBM) for the variable-coefficient forced Burgers equation (vc-FBE) is studied by choosing the equilibrium distribution and compensatory functions properly. In our model, the vc-FBE is correctly recovered via the Chapman-Enskog analysis. We numerically investigate the dynamic characteristics of solitons caused by the dispersive and external-force terms. Four numerical examples are given, which align well with the theoretical solutions. Our research proves that LBM is a satisfactory and efficient method for nonlinear evolution equations with variable coefficients.

READ FULL TEXT

page 5

page 6

page 7

page 8

research
06/15/2020

Structural stability of Lattice Boltzmann schemes

The goal of this work is to determine classes of traveling solitary wave...
research
03/29/2019

Nonlinear fourth order Taylor expansion of lattice Boltzmann schemes

We propose a formal expansion of multiple relaxation times lattice Boltz...
research
09/06/2023

A Cole-Hopf transformation based fourth-order multiple-relaxation-time lattice Boltzmann model for the coupled Burgers' equations

In this work, a Cole-Hopf transformation based fourth-order multiple-rel...
research
08/19/2022

Consistent lattice Boltzmann methods for the volume averaged Navier-Stokes equations

We derive a novel lattice Boltzmann scheme, which uses a pressure correc...
research
05/26/2021

Does the multiresolution lattice Boltzmann method allow to deal with waves passing through mesh jumps?

We consider an adaptive multiresolution-based lattice Boltzmann scheme, ...
research
12/21/2020

Well-balanced lattice Boltzmann equation for two-phase flows

The standard lattice Boltzmann equation (LBE) method usually fails to ca...

Please sign up or login with your details

Forgot password? Click here to reset