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Heterogeneity in topographic control on velocities of Western Himalayan glaciers

机译:西喜马拉雅冰川速度地形控制中的异质性

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Studies of the seasonal and annual patterns of glacier velocities improve our understanding of the ice volume, topography, responses to climate change, and surge events of glaciers. Such studies are especially relevant and equally rare for the Himalayan glaciers, which supply many rivers that sustain some of the most heavily populated mountainous regions in the world. In particular, the control of the hypsometric distribution of geomorphometric parameters, such as slope, aspect, and curvature, on the dynamics of Himalayan glaciers have never been studied so far, at the river basin scale. Here, we present the degree to which topographic and hypsometric parameters affect the seasonal and annual average flow velocities of 112 glaciers in the Baspa River basin in the Western Indian Himalaya by analysing Global Land Ice Velocity Extraction from Landsat 8 (GoLIVE) datasets for the years 2013–2017. We observe, (i) significant heterogeneity in topographic controls on the velocities of these glaciers, (ii) elevation and the seasons play important roles in regulating the degree to which morphometric parameters (slope, aspect, and curvature) affect these velocities, (iii) a possible polythermal regime promoting both sliding and deformational forms of motion in a majority of these glaciers, and (iv) a detailed analysis of complex topographic controls within various elevation zones using a novel hypso-morphometric approach. These findings can help us to better model the dynamics of Himalayan glaciers and their responses to the future climatic scenarios. The inferences also suggest the need to incorporate dynamic topography in glacio-hydrological models in the wake of constant glacial evolutions.
机译:对冰川速度的季节性和年度模式的研究提高了我们对冰量,地形,对气候变化的响应以及冰川激增事件的理解。此类研究特别相关,对于喜马拉雅冰川也同样罕见,喜马拉雅冰川供应许多河流,这些河流支撑着世界上某些人口最稠密的山区。尤其是,到目前为止,在流域范围内,从未研究过喜马拉雅冰川动力学对地貌参数(如坡度,坡向和曲率)的催眠分布的控制。在这里,我们通过分析多年来从Landsat 8(GoLIVE)数据集提取的全球陆地冰速提取数据,介绍了地形和测压参数在多大程度上影响了印度西部喜马拉雅山Baspa河盆地112条冰川的季节性和年度平均流速。 2013–2017。我们观察到,(i)这些冰川的速度在地形控制方面存在显着的异质性;(ii)海拔和季节在调节形态参数(坡度,纵横比和曲率)对这些速度的影响程度方面起着重要作用,(iii )一种可能在大多数冰川中促进滑动和变形形式的运动的多热机制,以及(iv)使用新颖的拟形形态学方法对不同海拔区域内复杂地形控制的详细分析。这些发现可以帮助我们更好地模拟喜马拉雅冰川的动力学及其对未来气候情景的响应。这些推论还表明,在不断的冰川演化之后,有必要将动态地形纳入冰川水文模型中。

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