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Multispeed Lattice Boltzmann Model with Space-Filling Lattice for Transcritical Shallow Water Flows

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  • Y. Peng
  • J. P. Meng
  • J. M. Zhang

Abstract

Inspired by the recent success of applying multispeed lattice Boltzmann models with a non-space-filling lattice for simulating transcritical shallow water flows, the capabilities of their space-filling counterpart are investigated in this work. Firstly, two lattice models with five integer discrete velocities are derived by using the method of matching hydrodynamics moments and then tested with two typical 1D problems including the dam-break flow over flat bed and the steady flow over bump. In simulations, the derived space-filling multispeed models, together with the stream-collision scheme, demonstrate better capability in simulating flows with finite Froude number. However, the performance is worse than the non-space-filling model solved by finite difference scheme. The stream-collision scheme with second-order accuracy may be the reason since a numerical scheme with second-order accuracy is prone to numerical oscillations at discontinuities, which is worthwhile for further study.

Suggested Citation

  • Y. Peng & J. P. Meng & J. M. Zhang, 2017. "Multispeed Lattice Boltzmann Model with Space-Filling Lattice for Transcritical Shallow Water Flows," Mathematical Problems in Engineering, Hindawi, vol. 2017, pages 1-5, August.
  • Handle: RePEc:hin:jnlmpe:8917360
    DOI: 10.1155/2017/8917360
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