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首页> 外文期刊>Annals of Glaciology >Initialization of an ice-sheet model for present-day Greenland
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Initialization of an ice-sheet model for present-day Greenland

机译:当今格陵兰冰盖模型的初始化

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We construct initial conditions for an ice flow model of the Greenland ice sheet (GrIS). GrIS has been losing mass at an increasing rate over the past two decades, and a significant proportion of this loss is due to dynamic thinning of narrow outlet glaciers. We solve an inverse problem to estimate poorly known basal and englacial parameters given observed geometry and surface velocities. A weighted cost function, resolved to 4 km in the interior of the ice sheet and 1 km in regions of fast-flowing ice at the margin, is minimized to find two-dimensional fields for a stiffness factor, which is a coefficient of the effective viscosity, and basal traction coefficient. Using these fields, we run the model under present-day climate to damp large-amplitude, short-wavelength fluctuations in the flux divergence. The time-dependent model uses an adaptive mesh with resolution ranging from 8 km of the base grid to 500 m in areas of fast-flowing ice to capture the behaviour of the main outlet glaciers. The ice discharge calculated from the initial conditions for GrIS and individual glaciers compares well with values calculated from observations.
机译:我们为格陵兰冰原(GrIS)的冰流模型构建了初始条件。在过去的二十年中,GrIS的质量不断增加,并且其中很大一部分是由于狭窄出口冰川的动态变薄所致。对于已知的几何形状和表面速度,我们解决了一个反问题,以估算未知的基础和冰川参数。权重成本函数在冰盖内部解析为4 km,在边缘快速流动的冰区解析为1 km,可以最小化以找到二维系数的刚度因子,这是有效系数粘度和基础牵引系数。利用这些场,我们在当前气候下运行该模型,以衰减通量散度中的大振幅,短波长波动。随时间变化的模型使用自适应网格,其分辨率在快速流动的冰区域中从基本网格的8 km到500 m不等,以捕获主要出口冰川的行为。根据GrIS和单个冰川的初始条件计算出的冰排放量与根据观测值计算出的值具有很好的比较性。

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