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Cloud-system resolving simulations with the NASA Goddard Earth Observing System global atmospheric model (GEOS-5)

机译:使用NASA戈达德地球观测系统全球大气模型(GEOS-5)进行云系统解析模拟

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摘要

The NASA Global Modeling and Assimilation Office (GMAO) has developed a global non-hydrostatic cloud-system resolving capability within the NASA Goddard Earth Observing System global atmospheric model version 5 (GEOS-5). Using a non-hydrostatic finite-volume dynamical core coupled with advances in the moist physics and convective parameterization the model has been used to perform cloud-system resolving experiments at resolutions as fine as 3.5-to 14-km globally. An overview of preliminary results highlights the development of mid-latitude cyclones, the overall representation of global tropical convection, intense convective activity within the eye wall and outer rain bands of the 2009 Atlantic hurricane Bill validated by satellite observations, and the seasonal predictability of global tropical cyclone activity with realistic intensities. These preliminary results provide motivation for the use of GEOS-5 to simulate multi-scale convective systems within a global model at cloud resolving resolutions.
机译:NASA全球建模和同化办公室(GMAO)在NASA Goddard地球观测系统全球大气模型版本5(GEOS-5)内开发了全球非静水云系统解析能力。该模型使用非流体静力学的有限体积动态岩心以及潮湿物理和对流参数化技术的进步,已被用于在全球范围内以3.5至14 km的高分辨率进行云系统解析实验。初步结果概述着重介绍了中纬度气旋的发展,全球热带对流的总体表现,通过卫星观测证实的2009年大西洋飓风法案眼墙内强烈的对流活动和外雨带以及全球气候的季节性可预测性具有现实强度的热带气旋活动。这些初步结果为使用GEOS-5在云分辨率下的全球模型内模拟多尺度对流系统提供了动力。

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