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SPECTRAL TRANSFORM SOLUTIONS TO THE SHALLOW WATER TEST SET

机译:浅水测试集的光谱变换解决方案

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Solutions to the test case suite proposed by Williamson at al. (J. Comput Phys, 102, 211 (1992)), for the shallow water equations in spherical geometry, are presented. The solutions have been generated using a conventional spectral transform technique combined with a semi-implicit time differencing scheme, For several of the lest cases, closed-form solutions do not exist. For these cases, high-resolution numerical integrations of the spectral transform model are used to provide reference solutions against which alternative numerical schemes and lower resolution spectral transform solutions can be evaluated, The sensitivity of the high resolution numerical solutions, associated with temporal truncation, spatial truncation, and internal dissipation, are quantified in order to help bound their uncertainty. In almost all of the test cases, the spectral trans-form method proves to be a highly accurate solution technique. This is particularly the case at resolutions typically associated with atmospheric general circulation models used to simulate the atmosphere's climate, The most serious deficiency of the spectral transform method, in the context of the test cases, is the introduction of spurious minima and maxima into the solution (caused by Gibbs phenomenon), when sharp gradients exist. Although this behavior is not necessarily a problem for accurately simulating fluid flow, it can become a serious problem for atmospheric general circulation models if the spurious wave structures result in nonphysical states such as negative water vapor mixing ratio. (C) 1995 Academic Press, Inc. [References: 18]
机译:Williamson等人提出的测试用例套件的解决方案。 (J.Comput Phys,102,211(1992)),提出了球形几何中的浅水方程。解决方案是使用常规频谱变换技术结合半隐式时间差分方案生成的。对于少数几种情况,不存在封闭形式的解决方案。对于这些情况,光谱变换模型的高分辨率数值积分用于提供参考解,可以据此评估替代数值方案和较低分辨率的光谱变换解。高分辨率数值解的敏感性,与时间截断,空间相关截断和内部耗散被量化,以帮助限制其不确定性。在几乎所有的测试案例中,频谱变换方法被证明是一种高度精确的解决方案技术。在通常与用于模拟大气气候的大气一般循环模型相关联的分辨率下尤其如此。在测试案例的背景下,光谱变换方法最严重的缺陷是在解决方案中引入了虚假最小值和最大值(由吉布斯现象引起),当存在尖锐的渐变时。尽管此行为不一定是精确模拟流体流动的问题,但如果杂波结构导致非物理状态(例如负的水蒸气混合比),则对于大气通用循环模型可能会成为一个严重的问题。 (C)1995 Academic Press,Inc. [参考:18]

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