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A new non-linear two-time-level Central Leapfrog scheme in staggered conservation-flux variables for fluctuating hydrodynamics equations with GPU implementation

机译:交错的养护通量变量中的一种新的非线性两级Central Leapfrog方案,用于通过GPU实现波动的水动力方程

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摘要

For solving Landau-Lifshitz Navier-Stokes fluctuating hydrodynamics equations, a two-time-level modification of the classical Central Leapfrog scheme with non-linear flux correction is developed. The new algorithm is simple for implementation and demonstrates high accuracy in satisfying the fluctuation-dissipation theorem. The numerical results for equilibrium and non-equilibrium problems in one-dimensional and three-dimensional settings are compared with theoretical predictions, the results from direct molecular dynamics simulations and also with those of several popular computational schemes in the literature. Because of simplicity and locality of the computational stencil, the new algorithm can be efficiently implemented on the GPU, which accelerates the calculation in comparison with a single-CPU-core computation by a factor of 300.
机译:为了求解Landau-Lifshitz Navier-Stokes波动流体动力学方程,开发了具有非线性通量校正功能的经典Central Leapfrog方案的两次水平修改。该新算法易于实现,在满足波动耗散定理方面具有很高的准确性。将一维和三维环境中平衡和非平衡问题的数值结果与理论预测,直接分子动力学模拟的结果以及文献中几种流行的计算方案的结果进行了比较。由于计算模板的简单性和局部性,新算法可以在GPU上高效实现,与单CPU内核计算相比,该算法可将计算速度提高300倍。

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