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Estimating the ice thickness of shallow glaciers from surface topography and mass-balance data with a shape optimization algorithm

机译:使用形状优化算法从表面地形和质量平衡数据估算浅层冰川的冰厚

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摘要

A shape optimization algorithm is presented that estimates the ice thickness distribution within a three-dimensional, shallow glacier, given a transient surface geometry and a mass-balance distribution. The approach is based on the minimization of the surface topography misfit in the shallow ice approximation by means of a primal-dual procedure. The method's essential novelty is that it uses surface topography and mass-balance data only within the context of a time-dependent problem with evolving surface topography. Moreover, the algorithm is capable of computing some of the model parameters concurrently with the ice thickness distribution. The method is validated on synthetic and real-world data, where the choice of its Tikhonov regularization parameter by means of an L-curve criterion is discussed.
机译:提出了一种形状优化算法,该算法可在给定瞬态表面几何形状和质量平衡分布的情况下估算三维浅冰川中的冰厚分布。该方法基于通过原始对偶程序将浅冰近似中的表面形貌失配最小化。该方法的本质新颖之处在于,它仅在与时俱进的表面形貌相关的时间相关问题的背景下使用表面形貌和质量平衡数据。而且,该算法能够与冰厚度分布同时计算一些模型参数。该方法在合成和真实数据上得到了验证,并讨论了通过L曲线准则选择其Tikhonov正则化参数的方法。

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