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Volume calculation and analysis of the changes in moraine-dammed lakes in the north Himalaya: A case study of Longbasaba lake

机译:喜马拉雅北部冰m堰塞湖变化的体积计算与分析:以龙巴萨巴湖为例

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Glacial lake outburst flood hazards in the Himalayan region have received considerable attention in recent years. Accurate volume estimation for glacial lakes is important for calculating outburst flood peak discharge and simulating flood evolution. Longbasaba lake, a potentially dangerous moraine-dammed lake, is located on the north side of the Himalaya. Its depth was surveyed using the SyQwest Hydrobox? high-resolution echo sounder, and 6916 measurements were collected in September 2009. The maximum and average depths of the lake were 102±2 and 48±2m, respectively. The morphology of the lake basin was modeled by constructing a triangulated irregular network, and the lake was found to have a storage capacity of 0.064±0.002km ~3. Multi-source remote-sensing images from Landsat MSS, Landsat TM/ETM+ and Terra ASTER and a topographic map were digitized to delineate the outlines of the lake between 1977 and 2009. The results indicate that the length and area of the lake have increased during the past 32 years, with a drastic expansion occurring since 2000. Based on volume and area data of Longbasaba lake in different periods, we deduced an empirical equation of the lake volume-area relationship that can be used to calculate the storage capacity of similar moraine-dammed lakes in the Himalayan region.
机译:近年来,喜马拉雅地区冰川湖爆发的洪水灾害受到了相当大的关注。准确估算冰川湖的体积对于计算爆发洪水峰值流量和模拟洪水演变非常重要。喜马拉雅山北侧的龙巴萨巴湖(Longbasaba Lake)是一个潜在危险的冰dangerous堰塞湖。使用SyQwest Hydrobox对其深度进行了调查?高分辨率回声测深仪,于2009年9月进行了6916次测量。湖的最大深度和平均深度分别为102±2m和48±2m。通过构造三角不规则网络模拟了湖盆的形态,发现该湖的储水能力为0.064±0.002km〜3。将Landsat MSS,Landsat TM / ETM +和Terra ASTER的多源遥感图像和地形图数字化,以描绘1977年至2009年之间的湖泊轮廓。结果表明,在此期间,湖泊的长度和面积都增加了在过去的32年中,自2000年以来发生了急剧的扩张。根据不同时期的长巴萨巴湖的体积和面积数据,我们推导出了一个湖体积与面积关系的经验方程,可用于计算类似冰ora的储水能力。喜马拉雅地区的大坝湖泊。

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