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首页> 外文期刊>Acta Geophysica >Testing the anelastic nonhydrostatic model EULAG as a prospective dynamical core of a numerical weather prediction model Part I: Dry benchmarks
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Testing the anelastic nonhydrostatic model EULAG as a prospective dynamical core of a numerical weather prediction model Part I: Dry benchmarks

机译:测试非弹性非静水模型EULAG作为数值天气预报模型的预期动力核心第一部分:干燥基准

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In this paper, a feasibility of anelastic approach for numerical weather prediction (NWP) is examined. The study concerns the anelastic nonhydrostatic model EULAG as a prospective candidate for the new dynamical core of a high-resolution NWP model. Such an application requires a series of benchmark tests to be performed. The study presents the results of dry idealized two-dimensional linear and non-linear tests. They include evolution of cold and warm density currents in neutrally stratified atmosphere, inertia-gravity waves in short and long channels, as well as mountain gravity waves for a set of different flow regimes. Detailed comparison of the results with the reference solutions, based mainly on the results of compressible models, indicates a high level of conformity for all of the experiments. It verifies the anelastic approach as strongly consistent with the compressible one for a broad class of atmospheric problems. It also corroborates the robustness of EULAG numerics, an essential requirement of dynamical core of NWP model.
机译:在本文中,研究了非弹性方法用于数值天气预报(NWP)的可行性。这项研究涉及非弹性非静水模型EULAG作为高分辨率NWP模型新动力核心的潜在候选者。这样的应用程序需要执行一系列基准测试。该研究提出了干式理想化二维线性和非线性测试的结果。它们包括中性分层大气中冷,热密度流的演化,短通道和长通道中的惯性重力波,以及针对一组不同流动形式的山地重力波。主要基于可压缩模型的结果,将结果与参考解决方案进行详细比较表明,所有实验均具有很高的一致性。它验证了无弹性方法与可压缩方法在各种大气问题上都非常一致。它还证实了EULAG数值的鲁棒性,这是NWP模型动力核心的基本要求。

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