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Parallel Numerical Modelling of Ice Flow in Antarctica

机译:南极冰流的并行数值模拟

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The Antarctic Ice Sheet is made up of the West Antarctic Ice Sheet (WAIS) and the much larger East Antarctic Ice Sheet (EAIS). Previous numerical models have focussed on ice flow in WAIS, since the size of the EAIS has precluded studies at a resolution adequate to identify complex flow features. The equations describing ice flow are highly non-linear, making this a computationally intensive problem. We use a staggered grid to overcome numerical instability and a sparse packing scheme to take account of the irregular boundary of Antarctica. We have developed a highly efficient parallel thermally-coupled ice flow model of the entire Antarctic Ice Sheet at a resolution of 20km and present performance results obtained on a commodity cluster of workstations. Our initial results show areas of East Antarctica at pressure melting point that may be characterised by fast ice flow.
机译:南极冰原由西南极冰原(WAIS)和更大的东南极冰原(EAIS)组成。以前的数值模型集中在WAIS中的冰流方面,因为EAIS的规模使研究无法以足以识别复杂流特征的分辨率进行。描述冰流的方程是高度非线性的,这使其成为计算密集型问题。我们使用交错网格来克服数值不稳定性,并使用稀疏打包方案来考虑南极洲的不规则边界。我们已经开发了整个南极冰原的高效并行热耦合冰流模型,分辨率为20 km,并提供了在工作站商品集群上获得的性能结果。我们的初步结果显示,南极东部地区处于压力融点,其特征可能是快速的冰流。

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