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A regularization of the Burgers equation using a filtered convective velocity

2008/06/02 by Greg Norgard, Kamran Mohseni · 18 citations
Engineering · Mathematics · Physics and Astronomy · #Burgers' equation #Computational Fluid Dynamics and Aerodynamics #Convection #Convection–diffusion equation #Inviscid flow #Navier-Stokes equation solutions #Nonlinear Waves and Solitons #Regularization (linguistics) #Shock wave #Singularity #Uniqueness #physics.flu-dyn

paper · pdf · doi:10.1088/1751-8113/41/34/344016

published in Journal of Physics A Mathematical and Theoretical 41(34), 344016 (Institute of Physics)

arxiv created 2008/06/02 · openalex publication_date 2008/08/11 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/06

Abstract

This paper examines the properties of a regularization of the Burgers equation in one and multiple dimensions using a filtered convective velocity, which we have dubbed as the convectively filtered Burgers (CFB) equation. A physical motivation behind the filtering technique is presented. An existence and uniqueness theorem for multiple dimensions and a general class of filters is proven. Multiple invariants of motion are found for the CFB equation which are shown to be shared with the viscous and inviscid Burgers equations. Traveling wave solutions are found for a general class of filters and are shown to converge to weak solutions of the inviscid Burgers equation with the correct wave speed. Numerical simulations are conducted in 1D and 2D cases where the shock behavior, shock thickness and kinetic energy decay are examined. Energy spectra are also examined and are shown to be related to the smoothness of the solutions. This approach is presented with the hope of being extended to shock regularization of compressible Euler equations.

Citations