Enhancement of the stability of lattice Boltzmann methods by dissipation control
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Publication:1783113
DOI10.1016/j.physa.2014.07.052zbMath1395.76068OpenAlexW2152840577WikidataQ57384835 ScholiaQ57384835MaRDI QIDQ1783113
D. J. Packwood, Alexander N. Gorban
Publication date: 20 September 2018
Published in: Physica A (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.physa.2014.07.052
Related Items (10)
Hybrid LBM-MRT model coupled with finite difference method for double-diffusive mixed convection in rectangular enclosure with insulated moving lid ⋮ Entropic Multi-Relaxation-Time Lattice Boltzmann Model for Large Density Ratio Two-Phase Flows ⋮ Numerical investigation of the accuracy, stability, and efficiency of lattice Boltzmann methods in simulating non-Newtonian flow ⋮ Chaos in the lid-driven square cavity ⋮ Efficient supersonic flow simulations using lattice Boltzmann methods based on numerical equilibria ⋮ Prediction on steady-oscillatory transition via Hopf bifurcation in a three-dimensional (3D) lid-driven cube ⋮ Burnett Order Stress and Spatially-Dependent Boundary Conditions for the Lattice Boltzmann Method ⋮ Central-moment lattice Boltzmann schemes with fixed and moving immersed boundaries ⋮ Comparative study of the lattice Boltzmann collision models for simulation of incompressible fluid flows ⋮ Lattice Boltzmann method for high Reynolds number compressible flow
Cites Work
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