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Melt-under-cutting and buoyancy-driven calving from tidewater glaciers: new insights from discrete element and continuum model simulations

机译:从潮水冰川的熔体膨胀和浮力驱动的钙管:来自离散元素和连续模型模拟的新见解

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The simple calving laws currently used in ice-sheet models do not adequately reflect the complexity and diversity of calving processes. To be effective, calving laws must be grounded in a sound understanding of how calving actually works. Here, we develop a new strategy for formulating calving laws, using (a) the Helsinki Discrete Element Model (HiDEM) to explicitly model fracture and calving processes, and (b) the continuum model Elmer/Ice to identify critical stress states associated with HiDEM calving events. A range of observed calving processes emerges spontaneously from HiDEM in response to variations in ice-front buoyancy and the size of subaqueous undercuts. Calving driven by buoyancy and melt under-cutting is under-predicted by existing calving laws, but we show that the location and magnitude of HiDEM calving events can be predicted in Elmer/Ice from characteristic stress patterns. Our results open the way to developing calving laws that properly reflect the diversity of calving processes, and provide a framework for a unified theory of the calving process continuum.
机译:目前用于冰板模型中使用的简单产犊法不会充分反映产犊过程的复杂性和多样性。为了有效,必须在理解的情况下立即接地,对实际工作的效果有效。在这里,我们开发了一种新的制定计算法律的新策略,使用(a)赫尔辛基离散元素模型(Hidem)来明确地模拟骨折和产犊过程,(b)连续体模型Elmer / Ice来识别与HIDEM相关的关键压力状态加入事件。响应于冰前浮力的变化和亚水下底切的尺寸而自发地从HIDEM自发出现一系列观察的产犊过程。通过现有的产犊法预测浮力和熔体膨胀驱动的产犊,但我们表明Hidem Calming事件的位置和大小可以从特征应力模式预测Elmer /冰。我们的成果开辟了开发实际规定的规定,正确反映了计算流程的多样性,并为Calling Process Continuum的统一理论提供了框架。

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