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On solving the momentum equations of dynamic sea ice models with implicit solvers and the elastic–viscous–plastic technique

机译:用隐式求解器和弹粘塑性技术求解动态海冰模型的动量方程

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摘要

EVP-solvers in two very different ice-ocean codes: the regular-grid, finite-volume Massachusetts Institute of Technology general circulation model (MITgcm) and the Alfred Wegener Institute Finite Element Ocean Model (FEOM). It is demonstrated that for both codes the obtained solutions of implicit VP-and EVP-solvers can differ significantly, because the EVP solutions tend to have smaller ice viscosities ("weaker" ice). EVP solutions tend to converge only slowly to implicit VP solutions for very small subcycling time steps. Variable resolution in the unstructured-grid model FEOM also affects the solution as smaller grid cell size leads to smaller viscosity in EVP solutions. Models with implicit VP-solvers can block narrow straits under certain conditions, while EVP-models are found to always allow flow as a consequence of lower viscosities.
机译:具有两种截然不同的冰海代码的EVP求解器:规则网格,有限体积的麻省理工学院普通循环模型(MITgcm)和阿尔弗雷德·韦格纳研究所有限元海洋模型(FEOM)。事实证明,对于这两个代码,获得的隐式VP和EVP求解器的解决方案可能会显着不同,因为EVP解决方案往往具有较小的冰粘度(“较弱”冰)。对于非常小的子循环时间步长,EVP解决方案往往只能缓慢收敛到隐式VP解决方案。非结构化网格模型FEOM中的可变分辨率也会影响解决方案,因为较小的网格单元尺寸会导致EVP解决方案中的粘度较小。具有隐式VP解算器的模型在某些条件下会阻塞狭窄的海峡,而EVP模型由于粘度较低而总是允许流动。

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