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A subglacial water-flow model for West Antarctica

机译:南极西部的冰川下水流模型

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摘要

The current generation of continental-scale ice-sheet models cannot successfully reproduce the complex ice/water/sediment interactions of the West Antarctic ice sheet (WAIS) in a physically meaningful manner. The potential of a thin-film-based subglacial water-flow model for incorporation into a continental-scale coupled ice/water flow model of the WAIS is evaluated in this paper. The subglacial water-flow model is applied to the Ross Sea sector of the WAIS, in both aleady-state and time-dependent form, to derive the equilibrium water depth for the present-day configuration. The potential for coupling the model to an ice-flow model is then demonstrated, using a variable sliding parameter that is a function of the subglacial water depth. A coupled ice/water flow model, using the parameterization tested in this paper, could have the potential for reproducing the surface elevation, velocity and thermal regime of the WAIS successfully. These requirements are crucial in modelling the evolution of the WAIS, and must be addressed before reliable continental-scale predictive models can be utilized.
机译:当前一代的大陆规模冰盖模型无法以物理上有意义的方式成功再现西南极冰盖(WAIS)的复杂冰/水/沉积物相互作用。本文评估了以薄膜为基础的冰川下水流模型并入到WAIS的大陆规模冰/水耦合模型中的潜力。冰川下的水流模型以领导状态和时间相关形式应用于WAIS的罗斯海区,以得出当今构造的平衡水深。然后,使用可变的滑动参数(该参数是冰下水深的函数),证明了将模型耦合到冰流模型的潜力。利用本文测试的参数化,一个冰/水耦合模型可以成功地再现WAIS的表面高度,速度和热态。这些要求对于模拟WAIS的演变至关重要,必须先解决这些要求,然后才能使用可靠的大陆尺度预测模型。

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