
In this paper we address the time-reversed simulation of viscous flows by the lattice Boltzmann method (LB). The theoretical derivation of the reversed LB from the Boltzmann equation is detailed, and the method implemented for weakly compressible flows using the D2Q9 scheme. The implementation of boundary conditions is also discussed. The accuracy and stability are illustrated by four test cases, namely the propagation of an acoustic wave in a medium at rest and in an uniform mean flow, the Taylor–Green vortex decay and the vortex pair–wall collision.
time-reversal, lattice Boltzmann equation, Time-reversal, Particle methods and lattice-gas methods, [PHYS.MECA.MEFL] Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph], [SPI.MECA.MEFL] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph], Probabilistic methods, particle methods, etc. for initial value and initial-boundary value problems involving PDEs, Lattice Boltzmann equation
time-reversal, lattice Boltzmann equation, Time-reversal, Particle methods and lattice-gas methods, [PHYS.MECA.MEFL] Physics [physics]/Mechanics [physics]/Fluid mechanics [physics.class-ph], [SPI.MECA.MEFL] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Fluids mechanics [physics.class-ph], Probabilistic methods, particle methods, etc. for initial value and initial-boundary value problems involving PDEs, Lattice Boltzmann equation
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