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A system of conservative regridding for ice–atmosphere coupling in a General Circulation Model (GCM)

机译:常规循环模型(GCM)中冰-气耦合的保守再磨系统

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The method of elevation classes, in which the ice surface model is run at multiple elevations within each grid cell, has proven to be a useful way for a low-resolution atmosphere inside a general circulation model (GCM) to produce high-resolution downscaled surface mass balance fields for use in one-way studies coupling atmospheres and ice flow models. Past uses of elevation classes have failed to conserve mass and energy because the transformation used to regrid to the atmosphere was inconsistent with the transformation used to downscale to the ice model. This would cause problems for two-way coupling. A strategy that resolves this conservation issue has been designed and is presented here. The approach identifies three grids between which data must be regridded and five transformations between those grids required by a typical coupled atmosphere–ice flow model. This paper develops a theoretical framework for the problem and shows how each of these transformations may be achieved in a consistent, conservative manner. These transformations are implemented in Glint2, a library used to couple atmosphere models with ice models. Source code and documentation are available for download. Confounding real-world issues are discussed, including the use of projections for ice modeling, how to handle dynamically changing ice geometry, and modifications required for finite element ice models.
机译:高程类方法(其中冰面模型在每个网格单元内在多个高程上运行)已被证明是一种有用的方法,可用于普通循环模型(GCM)中的低分辨率大气生成高分辨率的缩小规模的表面质量平衡场,用于单向研究大气和冰流模型的耦合。过去使用海拔级别的方法无法节省质量和能量,因为用于回归大气的变换与用于缩小为冰模型的变换不一致。这将导致双向耦合问题。 已经设计并提出了解决此保护问题的策略。该方法确定了三个网格之间的数据必须重新编码,以及典型的大气-冰流耦合模型所需的这些网格之间的五个转换。本文为该问题建立了理论框架,并说明了如何以一致,保守的方式实现这些转换。这些转换是在Glint2中实现的,该库用于将大气模型与冰模型耦合。源代码和文档可供下载。讨论了令人困惑的现实世界问题,包括使用投影进行冰建模,如何处理动态变化的冰几何形状以及有限元冰模型所需的修改。

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