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SEAWAT 2000: modelling unstable flow and sensitivity to discretization levels and numerical schemes

机译:SEAWAT 2000:对不稳定的流量以及对离散化水平和数值方案的敏感性进行建模

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摘要

A systematic analysis shows how results from the finite difference code SEAWAT are sensitive to choice of grid dimension, time step, and numerical scheme for unstable flow problems. Guidelines to assist in selecting appropriate combinations of these factors are suggested. While the SEAWAT code has been tested for a wide range of problems, the sensitivity of results to spatial and temporal discretization levels and numerical schemes has not been studied in detail for unstable flow problems. Here, the Elder-Voss-Souza benchmark problem has been used to systematically explore the sensitivity of SEAWAT output to spatio-temporal resolution and numerical solver choice. A grid size of 0.38 and 0.60% of the total domain length and depth respectively is found to be fine enough to deliver results with acceptable accuracy for most of the numerical schemes when Courant number (Cr) is 0.1. All numerical solvers produced similar results for extremely fine meshes; however, some schemes converged faster than others. For instance, the 3rd-order total variation-diminishing method (TVD3) scheme converged at a much coarser mesh than the standard finite difference methods (SFDM) upstream weighting (UW) scheme. The sensitivity of the results to Cr number depends on the numerical scheme as expected.
机译:系统分析表明,有限差分码SEAWAT的结果如何对网格尺寸,时间步长和不稳定流动问题的数值方案的选择敏感。建议指导方针以帮助选择这些因素的适当组合。尽管SEAWAT代码已经针对广泛的问题进行了测试,但是对于不稳定的流动问题,尚未对结果对空间和时间离散化水平以及数值方案的敏感性进行详细研究。在这里,Elder-Voss-Souza基准问题已被用来系统地探索SEAWAT输出对时空分辨率和数值求解器选择的敏感性。发现当Courant数(Cr)为0.1时,对于大多数数值方案而言,分别为总域长度和深度的0.38%和0.60%的网格大小足够精细,可以以可接受的精度提供结果。对于极细的网格,所有数值求解器都产生相似的结果。但是,某些方案的融合速度比其他方案更快。例如,三阶总变差减小法(TVD3)方案收敛于比标准有限差分法(SFDM)上游加权(UW)方案粗得多的网格上。结果对Cr数的敏感性取决于预期的数值方案。

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