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Testing a glacial erosion rule using hang heights of hanging valleys, Jasper National Park, Alberta, Canada

机译:使用悬挂山谷的悬挂高度测试冰川侵蚀规则,加拿大艾伯塔省贾斯珀国家公园

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摘要

In most models of glacial erosion, glacier sliding velocity is hypothesized to control rates of bedrock erosion. If this hypothesis is correct, then the elevation difference between hanging and trunk valley floors, the hang height, should be dictated by the relative sliding velocities of the glaciers that occupied these valleys. By considering sliding velocity to be proportional to balance velocity and using mass continuity, hang height is expressed in terms of glacier catchment areas, slopes, and widths, which can be estimated for past glaciers from the morphology of glacial valleys. These parameters were estimated for 46 hanging valleys and their trunk valleys in three adjacent regions of Jasper National Park. The variability in valley morphology can account for 55–85% of the hang height variability if erosion rate scales with balance velocity raised to a power of 1/3. This correspondence is in spite of spatial variations in glaciation duration, snow accumulation rates, and other variables that likely affected hang heights but cannot be readily estimated and so are not included in our formulation. Thus it appears that balance velocity, and by extension, sliding velocity if the two are proportional, may be a reasonable control variable for assessing erosion rate.
机译:在大多数冰川侵蚀模型中,假设冰川滑动速度可控制基岩侵蚀速率。如果这个假设是正确的,那么悬挂谷底和主干谷底之间的高度差,即悬挂高度,应该由占据这些谷底的冰川的相对滑动速度来决定。通过考虑滑动速度与平衡速度成正比并利用质量连续性,悬挂高度以冰川集水面积,坡度和宽度表示,可以根据冰川谷的形态来估算过去的冰川。这些参数是针对贾斯珀国家公园三个相邻区域的46个悬空谷及其主干谷估计的。如果侵蚀速率随着平衡速度提高到1/3的幂而成比例变化,则谷地形态的变化可占悬高变化的55-85%。尽管冰川持续时间,积雪率以及其他可能影响吊高但无法轻易估算的变量存在空间差异,但这种对应关系并不存在。因此,看来平衡速度以及滑动速度(如果两者成比例)可能是评估腐蚀速率的合理控制变量。

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