首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Changes in geometry and subglacial drainage of Midre Lovenbreen, Svalbard, determined from digital elevation models
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Changes in geometry and subglacial drainage of Midre Lovenbreen, Svalbard, determined from digital elevation models

机译:根据数字高程模型确定,斯瓦尔巴特群岛Midre Lovenbreen的几何形状和冰川下排水变化

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摘要

Digital elevation models (DEMs) of the bed and surface of the polythermal Midre Lovenbreen, Svalbard, are used to identify changes in glacier geometry between 1977 and 1995. The calculated mean annual mass balance (-0.61 m water equivalent (w.e) a~(-1)) is more negative than that derived from field measurements (-0.35 m w.e. a~(-1)), although the error associated with this value (±0.7 m a~(-1)) suggests that the difference may be accounted for by errors. However, similar discrepancies between DEM-based and field-based measurements of mass balance have been reported elsewhere in Svalbard. Although errors may be responsible, patterns of surface elevation change may also be explained in terms of patterns of ablation, accumulation, and dynamics. The theoretical structure of the subglacial drainage system is modelled using different assumptions about subglacial water pressure, in 1977 and 1995. These reconstructions are compared with the observed positions of proglacial outlet streams. Decreasing subglacial water pressure results in a decrease in the influence of surface morphology and an increase in the role of the bed topography on drainage routing, which generally leads to m,ore dispersed drainage. Long-term changes in the position of proglacial outlet streams occur as a result of changes in glacier geometry, but short-term changes may also occur in response to early season water pressures, controlled by meteorological and hydrological conditions.
机译:斯瓦尔巴特群岛多米德·洛文伯伦多热床和地表的数字高程模型(DEM)用于识别1977年至1995年之间冰川几何形状的变化。计算出的年均质量平衡(-0.61 m水当量(我们)a〜( -1))的负值要比现场测量的负值(-0.35 m we a〜(-1))更大,尽管与此值相关的误差(±0.7 ma〜(-1))表明可以解释这一差异。对于错误。但是,在斯瓦尔巴特群岛的其他地方也报道了基于DEM的和基于现场的质量平衡测量之间的相似差异。尽管误差可能是造成问题的原因,但也可以根据烧蚀,累积和动力学的模式来解释表面高程变化的模式。冰河排水系统的理论结构是在1977年和1995年使用关于冰河水压力的不同假设建模的。这些重建结果与冰河出口流的观测位置进行了比较。冰川下水压力的减小导致表面形态的影响减小,床床形貌对排水路径的作用增加,这通常会导致排水分散。冰川几何形状的变化会导致冰川出口流的位置发生长期变化,但受气象和水文条件控制的早期季节的水压,短期变化也可能发生。

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