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Post-20th century near-steady state of Batura Glacier: observational evidence of Karakoram Anomaly

机译:20世纪20世纪近稳态贝尔图拉冰川:喀喇昆仑异常的观察证据

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Stable or marginal mass loss dominating in Karakoram has been reported widely through satellite and ground investigations. This work aimed to verify the variation in glacier mass by collecting ground-based data. By tracking profiles from the first survey by China-Pakistan Batura Glacier Investigation Group in 1974-1975, we revisited Batura Glacier and conducted an updated comparable measurement of the glacier surface elevation and ice thickness of this large valley glacier of Karakoram, in August 2017. Results of ground penetrating radar (GPR) measurement were used to improve the accuracy of an ice thickness distribution model (GlabTop2). The model calculation agreed reasonably with the measurement when the optimal basal shear stress (100 kPa for clean ice to 140 kPa for heavy debris cover) and shape factor (0.9) were used. We then used a glacier bed topographies map to calculate the ice flux. By subtracting the glacier surface topographies from the remote-sensing measurements, we observed a marginal thinning in Batura during 2000-2016, with a rate of variation in glacier surface elevation of -0.12?±?0.27?m a -1 . It indicated that the mass gain in the accumulation area nearly compensated the mass loss in the ablation area. In addition, both ground and satellite remote measurement reveal a steady rate of decrease in surface of the Batura tongue, implying an absence of significant variation during the past 40 years. Moreover, the mass conservation equation was applied to the Batura tongue, in combination with surface elevation variation and ice flux evolution. The tongue-averaged mass balance diminished by more than half from the 1970s to the 2010s. In summary, we inferred a near-steady state of Batura Glacier post 2000 based on the above-mentioned evidence of "Karakoram Anomaly".
机译:在卡拉科姆统治稳定或边际大众损失均广泛地通过卫星和地面调查据报道。这项工作旨在通过收集基于地面数据来验证冰川质量的变化。通过在1974年至1975年由中国 - 巴基斯坦Batura冰川调查集团的第一次调查的跟踪档案,我们于2017年8月重新审视了Batura Glacier,并进行了更新的冰川表面高度和Karakoram的大谷冰川冰厚度的更新测量。地面穿透雷达(GPR)测量的结果用于提高冰厚度分布模型(GLABTOP2)的准确性。使用当使用最佳基础剪切应力(用于清洁冰至140kPa的100kPa至140kPa)和形状因子(0.9)时,可以合理地商定的模型计算。然后我们使用冰川床上地图地图来计算冰通量。通过从遥感测量中减去冰川表面的地形,我们在2000 - 2016年期间观察到蝙蝠拉的边缘变薄,冰川表面升高的变化率-0.12?±0.27?M A -1。它表明,积聚区域中的质量增益几乎补偿了消融区域中的质量损失。此外,接地和卫星远程测量均显示蝙蝠拉舌头表面的稳定减少速率,这意味着在过去的40年中没有显着变化。此外,与表面升高变化和冰通量进化组合将大规模保护方程施加到蝙蝠拉舌。舌头平均质量余额从20世纪70年代到2010年的一半以上减少了一半。总之,我们根据上述“karakoram异常”的证据推断出2000年近期稳定状态。

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