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Storms, disturbances, cyclones

机译:风暴,干扰,旋风

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摘要

Targeting a long-term effort towards a variable-resolution (VR) global weather and climate model, this study systematically configures and evaluates an unstructured mesh atmospheric model based on the multiresolution approach. The model performance is examined from dry dynamics to simple physics and full physics scenarios. In the dry baroclinic wave test, the VR model reproduces comparable fine-scale structures in the refined regions as a fine-resolution quasi-uniform (QU) mesh model. The mesh transition zone does not adversely affect the wave pattern. Regional kinetic energy spectra show that the fine-scale resolving ability improves as the fine resolution increases. Compared to a QU counterpart that has equivalent degrees of freedom, the VR model tends to increase the global errors, but the errors can be reduced when the resolution of the coarse region is increased. The performance over the coarse region is generally close to that of a low-resolution QU counterpart. Two multi-region refinement approaches, the hierarchical and polycentric refinement modes, further validate the model performance under the multiresolution refinement. Activating hyperdiffusion for horizontal velocity is helpful with respect to VR modeling. An idealized tropical cyclone test is further used to examine its ability to resolve fine-scale structures. In the simple physics environment, the VR model can have the tropical cyclone stably pass the transition zone in various configurations. A series of sensitivity tests examines the model performance in a hierarchical refinement mode. The simulations exhibit consistency even when the VR mesh is slightly perturbed by one of the three parameters that control the density function. The tropical cyclone, starting from the second refinement region and passing through the inner transition zone, gets intensified and covers a smaller area in the refined regions. Such variations are consistent with the behavior that one may observe when uniformly refining the QU mesh. In the full physics environment with a highly variable mesh that reaches sub-10 km resolution, the VR model also produces a reasonable evolution for the tropical cyclone. The explicit diffusion shows its usefulness in terms of suppressing some unrealistic isolated-scale structures that are far away from the initial vortex and does not adversely affect the physically important object. The fine-scale structure is determined mainly by the fine-resolution area, although the systems may have larger differences before they move into the fine-resolution area. Altogether, this work demonstrates that the multiresolution configuration is a reliable and economic alternative to high-resolution global modeling. The adverse impact due to mesh transition and the coarse region can be controlled well.
机译:针对可变分辨率(VR)全球天气和气候模型的长期努力,该研究系统地配置和评估基于多分辨率的方法的非结构化网格大气模型。模型性能从干式动力学检查到简单的物理和全物理场景。在干燥的律滚动波试验中,VR模型在精制区域中再现可比较的细尺度结构作为一种微分辨率准均匀(QU)网格模型。网格过渡区域不会对波模式产生不利影响。区域动能谱表明,随着精细分辨率的增加,微尺度分辨能力可提高。与具有相同程度的自由度的曲对方相比,VR模型趋于增加全局误差,但是当粗糙区域的分辨率增加时,可以减小误差。在粗糙区域上的性能通常接近低分辨率QU对应物的性能。两个多区域细化方法,分层和多中心细化模式,进一步验证了多分辨率细化下的模型性能。激活水平速度的高速区段对VR模型有用。理想化的热带气旋试验还用于检查其解析微尺度结构的能力。在简单的物理环境中,VR模型可以使热带气旋稳定地通过各种配置的过渡区。一系列灵敏度测试在分层细化模式下检查模型性能。即使在控制密度函数的三个参数之一时,模拟即使当VR网格略有扰乱。从第二种细化区域开始并穿过内过渡区的热带气旋变得加剧,覆盖了精制区域的较小区域。这种变化与在均匀地改进曲线网格时可以观察的行为一致。在具有达到10km分辨率的高度变量网格的全部物理环境中,VR模型也为热带气旋的合理演变。明确的扩散在抑制远离初始涡流的一些不切实际的隔离量表结构方面表现出其有用性,并且不会对物理重要的物体产生不利影响。微尺度结构主要由微分辨率区域确定,尽管在进入微分辨率区域之前,系统可能具有更大的差异。总之,这项工作表明,多分辨率配置是高分辨率全球建模的可靠和经济替代品。可以控制由于网格过渡和粗糙区域引起的不利影响。

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    《Oceanographic Literature Review》 |2021年第2期|272-278|共7页
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