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Contrasting the modelled sensitivity of the Amundsen Sea Embayment ice streams

机译:对比Amundsen Sea Embayment冰流的建模敏感性

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摘要

Present-day mass loss from the West Antarctic ice sheet is centred on the Amundsen Sea Embayment (ASE), primarily through ice streams, including Pine Island, Thwaites and Smith glaciers. To understand the differences in response of these ice streams, we ran a perturbed parameter ensemble, using a vertically-integrated ice flow model with adaptive mesh refinement. We generated 71 sets of three physical parameters (basal traction coefficient, ice viscosity stiffening factor and sub-shelf melt rate), which we used to simulate the ASE for 50 years. We also explored the effects of different bed geometries and basal sliding laws. The mean rate of sea-level rise across the ensemble of simulations is comparable with current observed rates for the ASE. We found evidence that grounding line dynamics are sensitive to features in the bed geometry: simulations using BedMap2 geometry resulted in a higher rate of sea-level rise than simulations using a rougher geometry, created using mass conservation. Modelled grounding-line retreat of all the three ice streams was sensitive to viscosity and basal traction, while the melt rate was more important in Pine Island and Smith glaciers, which flow through more confined ice shelves than Thwaites, which has a relatively unconfined shelf.
机译:如今,南极西部冰盖的质量损失主要集中在阿蒙森海堤(ASE)上,主要是通过冰流,包括松岛,Thwaites和史密斯冰川。为了了解这些冰流的响应差异,我们使用带有自适应网格细化的垂直集成冰流模型,运行了一个扰动参数集合。我们生成了71组三个物理参数(基本牵引系数,冰黏度变硬因子和子架融化速率),用于模拟ASE 50年。我们还探讨了不同床层几何形状和基底滑动定律的影响。在整个模拟过程中,海平面上升的平均速率与ASE目前观测到的速率相当。我们发现有证据表明接地线动力学对床层几何特征敏感:使用BedMap2几何进行模拟比使用通过质量守恒创建的使用更粗糙几何的模拟产生更高的海平面上升速度。所有三种冰流的模型接地线后退都对粘度和基础牵引力敏感,而在松岛和史密斯冰川中,融化速率更为重要,它们流经的密闭冰架比Thwaites更为狭窄,而后者的壁架却相对狭窄。

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