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Rheology of the Ronne Ice Shelf, Antarctica, inferred from satellite radar interferometry data using an inverse control method

机译:使用逆控制方法从卫星雷达干涉测量数据推论出南极罗恩冰架的流变学

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摘要

The Antarctic Ice Sheet is surrounded by large floating ice shelves that spread under their own weight into the ocean. Ice shelf rigidity depends on ice temperature and fabrics, and is influenced by ice flow and the delicate balance between bottom and surface accumulation. Here, we use an inverse control method to infer the rigidity of the Ronne Ice Shelf that best matches observations of ice velocity from satellite radar interferometry. Ice rigidity, or flow law parameter B, is shown to vary between 300 and 900 kPa a(1/3). Ice is softer along the side margins due to frictional heating, and harder along the outflow of large glaciers, which advect cold continental ice. Melting at the bottom surface of the ice shelf increases its rigidity, while freezing decreases it. Accurate numerical modelling of ice shelf flow must account for this spatial variability in mechanical characteristics.
机译:南极冰原周围是巨大的浮冰架,这些浮冰架在自重作用下扩散到海洋中。冰架的刚度取决于冰的温度和织物,并受冰流量以及底部和表面堆积之间微妙的平衡的影响。在这里,我们使用逆控制方法来推断Ronne冰架的刚度,该刚度与从卫星雷达干涉法测得的冰速观测最匹配。冰的刚度或流量定律参数B显示在300至900 kPa a(1/3)之间变化。由于摩擦加热,沿侧缘的冰较软,而沿平流着大陆冷冰的大冰川的流出则较硬。在冰架底部表面融化会增加其刚度,而冻结则会降低其刚度。冰架流动的精确数值模型必须考虑到机械特性的这种空间变化性。

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