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Solving the depth-averaged advection-diffusion equation on curvilinear grids using a hybrid flux-corrected transport technique

机译:使用混合磁通校正传输技术求解曲线网格上的深度平均的平均径向扩散方程

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A numerical scheme has been developed to solve the depth-averaged advection-diffusion equation on non-orthogonal boundary-fitted curvilinear grids. The use of a finite-volume approach allows the diffusive terms to be solved using central-differences but the problem still remains of how to treat the advective terms in an Eulerian context. This problem is solved by the use of a characteristic based scheme which allows accurate calculation of fluxes through high-order interpolation functions. The fluxes are then limited using a flux-correction technique to give a scheme which maintains both conservation and monotonicity in the solution. The results show that the technique is accurate, conservative, monotonic and phase preserving.
机译:已经开发了一种数值方案来解决非正交边界铆钉网格上的深度平均的平均防线扩散方程。 使用有限体积方法允许使用中央差异来解决的扩散术语,但问题仍然是如何在欧拉语境中治疗平均方面的问题。 通过使用基于特征的方案来解决该问题,该方案允许通过高阶插值函数精确计算通量。 然后使用磁通校正技术限制通量,以提供一种方案,该方案在溶液中保持保守和单调性。 结果表明,该技术是准确的,保守,单调和相位保存。

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