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The basal roughness of Pine Island Glacier, West Antarctica

机译:西南极洲松岛冰川的基础粗糙度

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We assess basal roughness beneath Pine Island Glacier (PIG), West Antarctica, based on a recent airborne radio-echo sounding dataset. We identify a clear relationship between faster ice flow and decreased basal roughness in significant parts of PIG. The central portion and two of its tributaries are particularly smooth, but the majority of the tributaries feeding the main trunk are rougher. We interpret the presence of a smooth bed as being a consequence of the deposition of marine sediments following disappearance of the West Antarctic ice sheet in the Pliocene or Pleistocene, and, conversely, a lack of marine sedimentation where the bed is rough. Importantly, we also identify a patchy distribution of marine sediments, and thus a bed over which the controls on flow vary. While there is a notable correspondence between ice velocity and bed roughness, we do not assume a direct causal relationship, but find that an indirect one is likely. Where low basal roughness results in low basal resistance to flow, a lower driving stress is required to produce the flux required to achieve mass balance. This, in turn, means that the surface in that area will be lower than surrounding areas with a rougher bed, and this will tend to draw flow into the area with low bed roughness. Since our studies shows that bed roughness beneath the tributaries of the trunk varies substantially, there is a strong likelihood that these tributaries will differ in the rate at which they transmit current velocity changes on the main trunk into the interior of the glacier basin.
机译:我们根据最近的机载无线电回声测深数据集,评估了南极洲的松岛冰川(PIG)下的基底粗糙度。我们发现在PIG的重要部位,更快的冰流和降低的基础粗糙度之间存在明显的关系。中央部分及其两个支流特别光滑,但向主干输送的大部分支流较粗糙。我们认为存在光滑的床是由于在上新世或更新世西部南极冰盖消失后海洋沉积物的沉积所致,相反地,由于床层较粗糙而缺乏海洋沉积物。重要的是,我们还确定了海洋沉积物的零散分布,因此也确定了流量控制变化的河床。尽管冰速和床面粗糙度之间存在显着的对应关系,但我们不假定存在直接因果关系,而是发现可能存在间接因果关系。在低基础粗糙度导致低基础流动阻力的情况下,需要较低的驱动应力来产生实现质量平衡所需的通量。反过来,这意味着该区域中的表面将比具有较粗糙床层的周围区域低,这将趋向于将流动吸引到具有较低床层粗糙度的区域中。由于我们的研究表明,干流支流下方的河床粗糙度变化很大,因此这些支流很可能会以不同的速率将主干流上的流速变化传输到冰川盆地内部。

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