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首页> 外文期刊>International Journal of Advanced Geosciences >Temporal monitoring of Ghamu bar glacial lakes using remote sensing and GIS
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Temporal monitoring of Ghamu bar glacial lakes using remote sensing and GIS

机译:利用遥感和地理信息系统对加姆巴冰川河的时间进行监测

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摘要

The trends of glacial lakes formation and glacial lake outburst flooding events have been increased across Himalayan Karakorum Hindu Kush (HKH) ranges during last decade due to increase in global warming. This research is addressing the temporal monitoring of ghamu bar glacial lakes using remote sensing and GIS. Landsat images of 1990, 2000, 2010 and 2015 were used to map temporal glacial lakes using normalized difference water index (NDWI) index. The results of normalized difference water index were validated through modified normalized difference water index and field photographs. Temporal variability shows that, glacier lake area has been increase from 1990 to 2015. In 1990 total area of lake was 0.052 sq, which further increased 0.0423 in 1995 than it decreases to 0.314 in 2000 due to detached of debris cover moraine from glacier tongue and it reach 0.0846 sq.km in 2005. The area gradually increased up to 0.1296 sq.km in 2010 and it goes up to 0.157 sq.km 2015. The overall increase in area are expanding at an accelerated rate in past two decades, indicating that Darkut glacier is more vulnerable toward climate change through increase in size and volume ofghamu bar glacial lakes. There is need for vigilance in monitoring of ghamu bar glacial lake through high resolution remote sensing data and development of Geo-database enabling more details about past and future lakes behaviors toward climate change impacts.
机译:由于全球变暖的加剧,在过去十年中,喜马拉雅喀喇昆仑兴都库什山脉(HKH)范围内冰川湖形成和冰川湖爆发洪水事件的趋势有所增加。这项研究致力于利用遥感和GIS解决加姆巴冰川湖的时间监测问题。使用1990年,2000年,2010年和2015年的Landsat图像,使用归一化差异水指数(NDWI)指数来绘制时间冰川湖。通过修正的归一化差异水指数和野外照片验证归一化差异水指数的结果。时间上的变化表明,冰川湖面积从1990年到2015年有所增加。1990年湖面总面积为0.052平方公里,1995年进一步增加了0.0423,而到2000年减少至0.314,这是由于冰川舌头和冰川和冰川的碎片覆盖了冰ora的缘故。 2005年达到0.0846平方公里。2010年面积逐渐增加到0.1296平方公里,到2015年达到0.157平方公里。在过去的20年中,总面积的增长正在加速。达古特冰川通过增加ghamu条形冰川湖的体积和体积,更容易受到气候变化的影响。需要通过高分辨率的遥感数据和地理数据库的开发来监视ghamu条冰川湖的警惕性,从而能够更多地了解过去和未来湖泊对气候变化影响的行为。

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