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Estimating the ice thickness of mountain glaciers with a shape optimization algorithm using surface topography and mass-balance

机译:使用表面地形和质量平衡的形状优化算法估算高山冰川的冰厚

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摘要

We present a shape optimization algorithm to estimate the ice thickness distribution within a two-dimensional, non-sliding mountain glacier, given a transient surface geometry and a mass-balance distribution. The approach is based on the minimization of the surface topography misfit at the end of the glacier's evolution in the shallow ice approximation of ice flow. Neither filtering of the surface topography where its gradient vanishes nor interpolation of the basal shear stress is involved. Novelty of the presented shape optimization algorithm is the use of surface topography and mass-balance only within a time-dependent Lagrangian approach for moving-boundary glaciers. On real-world inspired geometries, it is shown to produce estimations of even better quality in smaller time than the recently proposed steady and transient inverse methods. A sensitivity analysis completes the study and evinces the method's higher susceptibility to perturbations in the surface topography than in surface mass-balance or rate factor
机译:我们给出了一个形状优化算法,以估算二维,不滑动的高山冰川内的冰厚度分布,并给出了瞬态表面几何形状和质量平衡分布。该方法基于在冰流的浅冰近似中,冰川演化结束时表面形貌失配的最小化。既不涉及梯度消失的表面形貌的滤波,也不涉及基础切应力的内插。所提出的形状优化算法的新颖之处在于,仅在时间依赖的拉格朗日方法中对移动边界冰川使用了表面形貌和质量平衡。与最近提出的稳定和瞬态逆方法相比,在现实世界中受启发的几何图形可以显示出在更短的时间内获得更好质量的估计。敏感性分析完成了研究,并证明了该方法对表面形貌的扰动比对表面质量平衡或速率因子更高的敏感性

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