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An elastic-viscous-plastic sea ice model formulated on Arakawa B and C grids

机译:基于荒川B和C网格的弹性粘塑性海冰模型

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The elastic-viscous-plastic (EVP) sea ice rheology has been introduced in the large-scale Louvain-la-Neuve sea-Ice Model, version 2 (LIM2), and its performance has been evaluated. Centred difference versions of the rheology have been implemented on both an Arakawa B grid and a C grid, and their performance have been intercompared in coupled simulations with the Nucleus for European Modelling of the Ocean (NEMO) model. Integrations with both implementations lead to fairly similar results which compare well with observations and with previous LIM simulations. The C grid version, however, offers a number of advantages: (a) easier ice coupling with NEMO, which is itself defined on a C grid; (b) possibility of representing ice transport across one-cell-wide straits and passages; (c) better representation of inertial-plastic compressive waves. For these reasons, we recommend the use of the C grid EVP formulation of the ice dynamics in future LIM applications.
机译:弹性粘塑性(EVP)海冰流变学已在大型Louvain-la-Neuve海冰模型版本2(LIM2)中引入,并对其性能进行了评估。流变学的居中差异版本已在Arakawa B网格和C网格上实现,并且在与欧洲海洋建模核心(NEMO)模型的耦合模拟中已比较了它们的性能。与这两种实现方式的集成都可以得出非常相似的结果,与观察结果以及以前的LIM仿真都可以很好地进行比较。但是,C网格版本具有许多优点:(a)与NEMO的冰耦合更容易,NEMO本身是在C网格上定义的; (b)有可能代表跨一个单元的海峡和通道的冰运输; (c)更好地表示惯性塑性压缩波。由于这些原因,我们建议在将来的LIM应用中使用C网格EVP公式来表示冰动力学。

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