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Lattice Boltzmann model for shallow water in curvilinear coordinate grid

Lattice Boltzmann model for shallow water in curvilinear coordinate grid
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摘要 In this study, a multi-relaxation time lattice Boltzmann model for shallow water in a curvilinear coordinate grid is developed using the generalized form of the interpolation supplemented lattice Boltzmann method. The Taylor-Colette flow tests show that the proposed model enjoys a second order accuracy in space. The proposed model is applied to three types of meandering channels with 180°, 90°and 60° consecutive bends. The numerical results demonstrate that the simulated results agree well with previous computational and experimental data. In addition, the model can achieve the acceptable accuracy in terms of the water depth and the depth-averaged velocities for shallow water flows in curved and meandering channels over a wide range of bend angles. In this study, a multi-relaxation time lattice Boltzmann model for shallow water in a curvilinear coordinate grid is developed using the generalized form of the interpolation supplemented lattice Boltzmann method. The Taylor-Colette flow tests show that the proposed model enjoys a second order accuracy in space. The proposed model is applied to three types of meandering channels with 180°, 90°and 60° consecutive bends. The numerical results demonstrate that the simulated results agree well with previous computational and experimental data. In addition, the model can achieve the acceptable accuracy in terms of the water depth and the depth-averaged velocities for shallow water flows in curved and meandering channels over a wide range of bend angles.
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2017年第2期251-260,共10页 水动力学研究与进展B辑(英文版)
基金 Project supported by the Chinese Special Fund for En-vironmental Protection Research in the Public Interest(Grant No.201309006)
关键词 Curvilinear coordinate lattice Boltzmann method meandering flow multi-relaxation-time model shallow water Curvilinear coordinate, lattice Boltzmann method, meandering flow, multi-relaxation-time model, shallow water
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