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In Situ Eddy Analysis in a High-Resolution Ocean Climate Model

机译:高分辨率海洋气候模型中的原位涡流分析

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摘要

An eddy is a feature associated with a rotating body of fluid, surrounded by a ring of shearing fluid. In the ocean, eddies are 10 to 150 km in diameter, are spawned by boundary currents and baroclinic instabilities, may live for hundreds of days, and travel for hundreds of kilometers. Eddies are important in climate studies because they transport heat, salt, and nutrients through the world's oceans and are vessels of biological productivity. The study of eddies in global ocean-climate models requires large-scale, high-resolution simulations. This poses a problem for feasible (timely) eddy analysis, as ocean simulations generate massive amounts of data, causing a bottleneck for traditional analysis workflows. To enable eddy studies, we have developed an workflow for the quantitative and qualitative analysis of MPAS-Ocean, a high-resolution ocean climate model, in collaboration with the ocean model research and development process. Planned eddy analysis at high spatial and temporal resolutions will not be possible with a postprocessing workflow due to various constraints, such as storage size and I/O time, but the workflow enables it and scales well to ten-thousand processing elements.
机译:涡流是与流体的旋转体相关联的特征,其被剪切流体的环围绕。在海洋中,涡旋的直径为10至150公里,是由边界流和斜压不稳定性产生的,可以存活数百天,并可以传播数百公里。涡流在气候研究中非常重要,因为它们通过世界海洋输送热量,盐分和营养,并且是生物生产力的容器。对全球海洋气候模型中的涡流的研究需要大规模,高分辨率的模拟。这对可行的(及时)涡流分析提出了一个问题,因为海洋模拟会生成大量数据,从而造成传统分析工作流程的瓶颈。为了进行涡流研究,我们与海洋模型研究与开发过程合作,开发了一种工作流程,用于对MPAS-Ocean(一种高分辨率海洋气候模型)进行定量和定性分析。由于各种限制(例如存储大小和I / O时间),使用后处理工作流将无法在高空间和时间分辨率下进行计划的涡流分析,但是该工作流使之能够进行扩展并很好地扩展到一万个处理元素。

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