High-order central-upwind shock capturing scheme using a boundary variation diminishing (BVD) algorithm
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Publication:2127162
DOI10.1016/j.jcp.2020.110067OpenAlexW3112375379MaRDI QIDQ2127162
Amareshwara Sainadh Chamarthi, Steven H. Frankel
Publication date: 19 April 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2012.09905
finite volume methodshock capturinglow dissipationboundary variation diminishingcompact reconstruction
Related Items (8)
An accurate, robust and efficient convection-pressure flux splitting scheme for compressible Euler flows ⋮ On the application of gradient based reconstruction for flow simulations on generalized curvilinear and dynamic mesh domains ⋮ New simple local smoothness indicators for fifth-order WENO schemes simulating compressible flows ⋮ Implicit gradients based conservative numerical scheme for compressible flows ⋮ Efficient high-order gradient-based reconstruction for compressible flows ⋮ A unified framework for non-linear reconstruction schemes in a compact stencil. I: Beyond second order ⋮ Symmetry-preserving enforcement of low-dissipation method based on boundary variation diminishing principle ⋮ Gradient based reconstruction: inviscid and viscous flux discretizations, shock capturing, and its application to single and multicomponent flows
Uses Software
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