首页> 外文期刊>Monthly Weather Review >Conservative Semi-Lagrangian Transport on a Sphere and the Impact on Vapor Advection in an Atmospheric General Circulation Model
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Conservative Semi-Lagrangian Transport on a Sphere and the Impact on Vapor Advection in an Atmospheric General Circulation Model

机译:大气总体环流模型中球的保守半拉格朗日输运及其对流平流的影响

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摘要

A conservative semi-Lagrangian scheme with rational function for interpolation is implemented in spherical geometry and tested in an atmospheric general circulation model (AGCM). The new scheme, different from the conventional semi-Lagrangian method, is conservative and oscillation free. By introducing polar mixing and a time split computation of divergence, the scheme can compute advection transport correctly over the polar regions. Idealized advection tests with various velocity fields were carried out to demonstrate numerical accuracy and conservation in comparison with the spectral schemes. The impact of the advection computation on water vapor circulation in an AGCM is also investigated with numerical simulations on the Earth Simulator. Both pure advection tests and general circulation experiments show that the presented scheme is effective in improving the tracer transport property and the precipitation field in comparison with the leapfrog-spectral method.
机译:在球面几何中实现了具有合理插值功能的保守半拉格朗日方案,并在大气总循环模型(AGCM)中进行了测试。与传统的半拉格朗日方法不同,该新方案是保守且无振荡的。通过引入极地混合和时分的散度计算,该方案可以正确计算极地区域上的对流传输。进行了各种速度场的理想对流测试,以证明与频谱方案相比,数值精度和守恒性。对流计算对AGCM中水蒸气循环的影响也通过地球模拟器上的数值模拟进行了研究。纯平流试验和一般循环试验均表明,与跨越谱法相比,该方案可有效改善示踪剂的输运性质和降水场。

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