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首页> 外文期刊>Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data >Estimating the ice thickness of mountain glaciers with an inverse approach using surface topography and mass-balance
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Estimating the ice thickness of mountain glaciers with an inverse approach using surface topography and mass-balance

机译:使用表面形貌和质量平衡的逆方法估算高山冰川的冰厚

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摘要

We present a numerical method to estimate the ice thickness distribution within a two-dimensional, non-sliding mountain glacier, given a transient surface geometry and a mass-balance distribution, which are relatively easy to obtain for a large number of glaciers. The inverse approach is based on the shallow ice approximation (SIA) of ice flow and requires neither filtering of the surface topography with a lower slope limit nor approximation of constant basal shear stress. We first address this problem for a steady-state surface geometry. Next, we use an apparent surface mass-balance description that makes the transient evolution quasi-stationary. Then, we employ a more elaborated fixed-point method in which the bedrock solution is iteratively obtained by adding the difference between the computed and known surface geometries at the end of the considered time interval. In a sensitivity study, we show that the procedure is much more susceptible to small perturbations in surface geometry than mass-balance. Finally, we present preliminary results for bed elevations in three space dimensions.
机译:考虑到瞬态表面几何形状和质量平衡分布,我们相对容易获得大量冰川,因此,我们提出了一种数值方法来估算二维,不滑动的高山冰川内的冰厚度分布。反方法基于冰流的浅冰近似(SIA),既不需要过滤具有较低斜率限制的表面形貌,也不需要近似恒定的基础剪应力。我们首先解决稳态表面几何形状的问题。接下来,我们使用表观表面质量平衡描述,使瞬态演化近似平稳。然后,我们采用了更为详尽的定点方法,在该方法中,在考虑的时间间隔结束时,通过将计算出的表面几何形状与已知表面几何形状之间的差值相加,迭代地获得基岩解决方案。在一项敏感性研究中,我们表明该过程比质量平衡更容易受到表面几何形状的细微扰动。最后,我们介绍了三个空间尺寸的床高程的初步结果。

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