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Mapping of moraine dammed glacial lakes and assessment of their areal changes in the central and eastern Himalayas using satellite data 被引量:3
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作者 Sazeda BEGAM Dhrubajyoti SEN 《Journal of Mountain Science》 SCIE CSCD 2019年第1期77-94,共18页
The relatively rapid recession of glaciers in the Himalayas and formation of moraine dammed glacial lakes(MDGLs) in the recent past have increased the risk of glacier lake outburst floods(GLOF) in the countries of Nep... The relatively rapid recession of glaciers in the Himalayas and formation of moraine dammed glacial lakes(MDGLs) in the recent past have increased the risk of glacier lake outburst floods(GLOF) in the countries of Nepal and Bhutan and in the mountainous territory of Sikkim in India. As a product of climate change and global warming, such a risk has not only raised the level of threats to the habitation and infrastructure of the region, but has also contributed to the worsening of the balance of the unique ecosystem that exists in this domain that sustains several of the highest mountain peaks of the world. This study attempts to present an up to date mapping of the MDGLs in the central and eastern Himalayan regions using remote sensing data, with an objective to analyse their surface area variations with time from 1990 through 2015, disaggregated over six episodes. The study also includes the evaluation for susceptibility of MDGLs to GLOF with the least criteria decision analysis(LCDA). Forty two major MDGLs, each having a lake surface area greater than 0.2 km2, that were identified in the Himalayan ranges of Nepal, Bhutan, and Sikkim, have been categorized according to their surface area expansion rates in space and time. The lakes have been identified as located within the elevation range of 3800 m and6800 m above mean sea level(a msl). With a total surface area of 37.9 km2, these MDGLs as a whole were observed to have expanded by an astonishing 43.6% in area over the 25 year period of this study. A factor is introduced to numerically sort the lakes in terms of their relative yearly expansion rates, based on their interpretation of their surface area extents from satellite imageries. Verification of predicted GLOF events in the past using this factor with the limited field data as reported in literature indicates that the present analysis may be considered a sufficiently reliable and rapid technique for assessing the potential bursting susceptibility of the MDGLs. The analysis also indicates that, as of now, th 展开更多
关键词 GLACIER RETREAT lakes mapping MORAINE dammed GLACIAL lake(MDGL) Surface area change of lakes Landsat imagery data Least criteria decision analysis(LCDA)
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唐《西洱河图》与全新世中期以来洱海水系变迁 被引量:4
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作者 周宏伟 《第四纪研究》 CAS CSCD 北大核心 2006年第4期621-627,共7页
《西洱河图》为唐时南诏国人所绘制的一幅洱海地图,其中保存了洱海湖水南流的珍贵信息。文章采用第四纪地质学、地貌学、历史学和考古学等方面的材料、成果与研究方法,证明该图所显示的古洱海湖水南流的情况是真实可信的,古洱海湖水... 《西洱河图》为唐时南诏国人所绘制的一幅洱海地图,其中保存了洱海湖水南流的珍贵信息。文章采用第四纪地质学、地貌学、历史学和考古学等方面的材料、成果与研究方法,证明该图所显示的古洱海湖水南流的情况是真实可信的,古洱海湖水可以循波罗江道、定西岭裂隙南流,并由此复原了全新世中期以来洱海湖水南流通道的变迁过程:第1阶段(约8465—6950cal.aB.P.),洱海湖水南流时间较短;第2阶段(约6950—2560cal.aB.P.),洱海湖水绝大部分时间南流,流量较大;第3阶段(约2560cal.aB.P.-1111A.D.),洱海湖水南流,流量变小;第4阶段(约1111A.D.至今),洱海湖水南流水道完全阻塞。最后指出,全新世中期以来,洱海出现的高水面主要与洱海的另一出水口——西洱河断裂带裂隙的堵塞有关,而洱海水面出现的快速下降现象,亦主要与西洱河断裂带裂隙的通畅有关。研究结论不但为长期不得其解的全新世中期以来洱海湖面的大幅度升降之谜提供了较好的解释,而且也可以纠正学术界在汉代“叶榆河”、“仆水”、“劳水”问题上出现的错误认识。 展开更多
关键词 西洱河图 洱海 水系 定西岭裂隙
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青藏高原湖泊面积动态监测 被引量:22
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作者 杨珂含 姚方方 +2 位作者 董迪 董文 骆剑承 《地球信息科学学报》 CSCD 北大核心 2017年第7期972-982,共11页
高原湖泊的动态变化对区域水循环具有重要影响。受全球气候变化的影响,青藏高原湖泊自20世纪90年代开始呈现剧烈扩张趋势。为揭示近年来青藏高原湖泊面积的时空变化规律,本文提出了一种改进的半自动湖泊提取算法,结合环境减灾卫星(HJ-1A... 高原湖泊的动态变化对区域水循环具有重要影响。受全球气候变化的影响,青藏高原湖泊自20世纪90年代开始呈现剧烈扩张趋势。为揭示近年来青藏高原湖泊面积的时空变化规律,本文提出了一种改进的半自动湖泊提取算法,结合环境减灾卫星(HJ-1A/1B)和Landsat系列卫星影像数据,对青藏高原内流流域中面积大于50 km^2的127个湖泊进行了连续6年的动态监测,并分析了该区域2009-2014年湖泊面积时空变化特征。研究结果表明,该区域湖泊整体呈现显著扩张趋势,年均变化速率为231.89 km^2yr^(-1)(0.87%yr^(-1)),6年间湖泊面积扩张速率有所减缓。其中,扩张湖泊有104个,收缩湖泊有23个,变化速率分别为271.08 km^2yr^(-1)(1.02%yr^(-1))和-39.19 km^2yr^(-1)(-0.15%yr^(-1))。不同区域湖泊面积变化具有明显差异,主要表现为东部及北部大部分区域湖泊扩张,南部地区大部分湖泊面积稳定,萎缩湖泊主要分布于研究区四周。最后,本文通过分析冰川融水补给对湖泊面积变化的影响,发现存在冰川融水补给的湖泊面积变化率远大于不存在冰川融水补给的湖泊。由此可见,近年来冰川融水的增加是促进青藏高原内流流域湖泊扩张的主要因素之一。 展开更多
关键词 青藏高原 湖泊 遥感 动态制图 环境减灾卫星
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