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Modeling the elastic transmission of tidal stresses to great distances inland in channelized ice streams

机译:模拟潮汐应力在通道化冰流中向内陆远距离的弹性传递

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pstrongAbstract./strong Geodetic surveys suggest that ocean tides can modulate the motion of Antarctic ice streams, even at stations many tens of kilometers inland from the grounding line. These surveys suggest that ocean tidal stresses can perturb ice stream motion at distances about an order of magnitude farther inland than tidal flexure of the ice stream alone. Recent models exploring the role of tidal perturbations in basal shear stress are primarily one- or two-dimensional, with the impact of the ice stream margins either ignored or parameterized. Here, we use two- and three-dimensional finite-element modeling to investigate transmission of tidal stresses in ice streams and the impact of considering more realistic, three-dimensional ice stream geometries. Using Rutford Ice Stream as a real-world comparison, we demonstrate that the assumption that elastic tidal stresses in ice streams propagate large distances inland fails for channelized glaciers due to an intrinsic, exponential decay in the stress caused by resistance at the ice stream margins. This behavior is independent of basal conditions beneath the ice stream and cannot be fit to observations using either elastic or nonlinear viscoelastic rheologies without nearly complete decoupling of the ice stream from its lateral margins. Our results suggest that a mechanism external to the ice stream is necessary to explain the tidal modulation of stresses far upstream of the grounding line for narrow ice streams. We propose a hydrologic model based on time-dependent variability in till strength to explain transmission of tidal stresses inland of the grounding line. This conceptual model can reproduce observations from Rutford Ice Stream./p.
机译:> >摘要。大地测量表明,即使在距地面数十公里的内陆站,海潮也可以调节南极冰流的运动。这些调查表明,与单独的冰流的潮汐弯曲相比,海洋潮汐应力会干扰冰流在距内陆更近一个数量级的距离处运动。探索潮汐扰动在基础剪应力中作用的最新模型主要是一维或二维的,而冰流边界的影响要么被忽略,要么被参数化。在这里,我们使用二维和三维有限元建模来研究冰流中潮汐应力的传递以及考虑更现实的三维冰流几何形状的影响。使用拉特福德冰河作为现实世界的比较,我们证明了冰河中的弹性潮汐应力向内陆传播很长一段距离的假设对于通道化冰川是失败的,这是由于由冰河边缘的阻力引起的应力的内在,指数衰减。这种行为与冰流下方的基础条件无关,并且在没有将冰流从其侧边缘几乎完全解耦的情况下,无法适合使用弹性或非线性粘弹性流变学进行的观测。我们的结果表明,冰流外部的机制对于解释窄冰流在接地线上游的应力的潮汐调制是必要的。我们提出了一种基于时间相关的直到耕作强度的水文模型,以解释潮汐应力在接地线向内陆的传播。这个概念模型可以重现拉特福德冰流的观测结果。

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