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A Multiresolution Method For Climate System Modeling: Application Of Spherical Centroidal Voronoi Tessellations

机译:气候系统建模的多分辨率方法:球形质心Voronoi镶嵌的应用

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During the next decade and beyond, climate system models will be challenged to resolve scales and processes that are far beyond their current scope. Each climate system component has its prototypical example of an unresolved process that may strongly influence the global climate system, ranging from eddy activity within ocean models, to ice streams within ice sheet models, to surface hydrological processes within land system models, to cloud processes within atmosphere models. These new demands will almost certainly result in the develop of multiresolution schemes that are able, at least regionally, to faithfully simulate these fine-scale processes. Spherical centroidal Voronoi tessellations (SCVTs) offer one potential path toward the development of a robust, multiresolution climate system model components. SCVTs allow for the generation of high-quality Voronoi diagrams and Delaunay triangulations through the use of an intuitive, user-defined density function. In each of the examples provided, this method results in high-quality meshes where the quality measures are guaranteed to improve as the number of nodes is increased. Real-world examples are developed for the Greenland ice sheet and the North Atlantic ocean. Idealized examples are developed for ocean-ice shelf interaction and for regional atmospheric modeling. In addition to defining, developing, and exhibiting SCVTs, we pair this mesh generation technique with a previously developed finite-volume method. Our numerical example is based on the nonlinear, shallow-water equations spanning the entire surface of the sphere. This example is used to elucidate both the potential benefits of this multiresolution method and the challenges ahead.
机译:在接下来的十年及以后的时间里,气候系统模型将面临挑战,以解决远远超出其当前范围的规模和过程。每个气候系统组件都有其未解决过程的原型示例,该过程可能会严重影响全球气候系统,范围从海洋模型中的涡流活动,冰盖模型中的冰流,陆地系统模型中的地表水文过程到内部的云过程大气模型。这些新需求几乎肯定会导致多分辨率方案的发展,这些方案至少可以在区域上忠实地模拟这些精细过程。球形质心Voronoi镶嵌(SCVT)为开发健壮的多分辨率气候系统模型组件提供了一条潜在途径。 SCVT通过使用直观的用户定义的密度函数,可以生成高质量的Voronoi图和Delaunay三角剖分。在所提供的每个示例中,此方法都可以生成高质量的网格,其中保证质量度量随节点数量的增加而提高。针对格陵兰冰原和北大西洋开发了真实示例。为海冰架相互作用和区域大气建模开发了理想的例子。除了定义,开发和展示SCVT外,我们还将这种网格生成技术与以前开发的有限体积方法结合使用。我们的数值示例基于跨越球体整个表面的非线性浅水方程。此示例用于阐明此多分辨率方法的潜在好处以及未来的挑战。

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