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Buoyant forces promote tidewater glacier iceberg calving through large basal stress concentrations

机译:浮力力量促进潮水冰川冰山通过大型基底应力浓度

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Iceberg calving parameterisations currently implemented in ice sheet models do not reproduce the full observed range of calving behaviours. For example, though buoyant forces at the ice front are known to trigger full-depth calving events on major Greenland outlet glaciers, a multi-stage iceberg calving event at Jakobshavn Isbr? is unexplained by existing models. To explain this and similar events, we propose a notch-triggered rotation mechanism, whereby a relatively small subaerial calving event triggers a larger full-depth calving event due to the abrupt increase in buoyant load and the associated stresses generated at the ice–bed interface. We investigate the notch-triggered rotation mechanism by applying a geometric perturbation to the subaerial section of the calving front in a diagnostic flow-line model of an idealised glacier snout, using the full-Stokes, finite element method code Elmer/Ice. Different sliding laws and water pressure boundary conditions are applied at the ice–bed interface. Water pressure has a big influence on the likelihood of calving, and stress concentrations large enough to open crevasses were generated in basal ice. Significantly, the location of stress concentrations produced calving events of approximately the size observed, providing support for future application of the notch-triggered rotation mechanism in ice-sheet models.
机译:目前在冰板模型中实施的冰山Calming参数不会再现完全观察到的Calming行为范围。例如,虽然已知冰前面的浮力势力在格陵兰大陆出口冰川上触发全深度产犊事件,但在Jakobshavn ISBR的多级冰山Calcing事件?现有模型无法解释。为了解释这一点和类似的事件,我们提出了一种触发触发的旋转机构,由此相对小的子系统输出事件引起了由于浮标载荷突然增加以及在冰床界面处产生的相关应力而越来越大的全深度计算事件。我们通过使用全斯托克斯,有限元方法代码ELMER / ICE在理想化的冰川鼻子的诊断流线模型中对CALPONT前部的诊断流线模型应用到CALPONT前部的子宫部分剖面来调查凹口触发的旋转机制。在冰床界面上施加不同的滑动法和水压边界条件。水压对产犊的可能性有很大影响,并且在基础冰中产生足够大的应力浓度以开放裂隙。值得注意的是,应力浓度的位置产生了大约观察到的尺寸的输出事件,为未来应用了凹口触发机构在冰板模型中的应用。

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