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首页> 外文期刊>Journal of Glaciology >Numerical simulations of the ice flow dynamics of george VI ice Shelf, Antarctica
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Numerical simulations of the ice flow dynamics of george VI ice Shelf, Antarctica

机译:南极乔治六世冰架冰流动力学的数值模拟

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摘要

A diagnostic, dynamic/thermodynamic ice-shelf model is applied to the George VI Ice Shelf, situated in the Bellinghausen Sea, Antarctica. The George VI Ice Shelf has a peculiar flow geometry which sets it apart from other ice shelves. inflow occurs along the two longest, and almost parallel, sides, whereas outflow occurs on the two ice fronts that are relatively short and situated at opposite ends of the ice shelf. Two data sources were used to derive the ice thickness distribution: conventional radio-echo sounding from the British Antarctic Survey was combined with thickness inferred from surface elevation obtained by the NASA GLAS satellite system assuming hydrostatic equilibrium. We simulate the present ice flow over the ice shelf that results from the ice thickness distribution, the inflow at the grounding line and the flow rate factor. The high spatial resolution of the ice thickness distribution leads to very detailed simulations. The flow field has some extraordinary elements (e.g. the stagnation point characteristics resulting from the unusual ice-shelf geometry).
机译:将诊断,动态/热力学冰架模型应用于位于南极洲贝灵豪森海的乔治六世冰架。乔治六世冰架具有独特的流动几何形状,使其与其他冰架区分开来。流入沿两个最长且几乎平行的侧面发生,而流出发生在相对较短且位于冰架相对两端的两个冰锋上。有两个数据源用于得出冰的厚度分布:英国南极调查局的常规无线电回波测深与从假设静水力平衡的NASA GLAS卫星系统获得的表面高度推断的厚度相结合。我们模拟了当前冰在冰架上的流动,该流动是由冰厚度分布,接地线的流入量和流速因子产生的。冰厚度分布的高空间分辨率导致非常详细的模拟。流场具有一些非常规元素(例如,由非常规的冰架几何形状导致的停滞点特性)。

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