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The Matsuno baroclinic wave test case

机译:松野斜波测试案例

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The analytic wave solutions obtained by Matsuno ( 1966 ) in his seminal work on equatorial waves provide a simple and informative way of assessing the performance of atmospheric models by measuring the accuracy with which they simulate these waves. These solutions approximate the solutions of the shallow-water equations on the sphere for low gravity-wave speeds such as those of the baroclinic modes in the atmosphere. This is in contrast to the solutions of the non-divergent barotropic vorticity equation, used in the Rossby–Haurwitz test case, which are only accurate for high gravity-wave speeds such as those of the barotropic mode. The proposed test case assigns specific values to the wave parameters (gravity-wave speed, zonal wave number, meridional wave mode and wave amplitude) for both planetary and inertia-gravity waves, and suggests simple assessment criteria suitable for zonally propagating wave solutions. The test is successfully applied to a spherical shallow-water model in an equatorial channel and to a global-scale model. By adding a small perturbation to the initial fields it is demonstrated that the chosen initial waves remain stable for at least 100 wave periods. The proposed test case can also be used as a resolution convergence test.
机译:Matsuno(1966)在他对赤道波的开创性工作中获得的解析波解提供了一种简单而有益的方法,即通过测量模拟它们的准确性来评估大气模型的性能。对于低重力波速度(例如大气中斜压模式的速度),这些解近似于球体上的浅水方程的解。这与在Rossby–Haurwitz测试案例中使用的非发散正压涡度方程的解相反,后者仅对高重力波速度(如正压模式速度)准确。拟议的测试案例为行星和惯性重力波都赋予了特定的波参数值(重力波速度,纬向波数,子午波模式和波幅),并提出了适用于区域传播波解的简单评估标准。该测试已成功应用于赤道海峡的球形浅水模型和全球规模的模型。通过对初始场增加一个小的扰动,可以证明所选的初始波至少在100个波周期内保持稳定。建议的测试用例也可以用作分辨率收敛测试。

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