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国家自然科学基金(40940018)

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High-altitude salt lake elevation changes and glacial ablation in Central Tibet,2000-2010
This research quantifies lake level variations in the Siling Co,Co’e and Bangor Co salt lakes in Central Tibet...
MENG KaiSHI XuHuaWANG ErchieLIU Feng
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High-altitude salt lake elevation changes and glacial ablation in Central Tibet, 2000-2010被引量:17
2012年
This research quantifies lake level variations in the Siling Co, Co'e and Bangor Co salt lakes in Central Tibet from 1976 to 2010, and most notably for the 2000-2010 periods. In particular, the effects of different water replenishment modes on the lakes have been analyzed. Here we have provided new evidences for climate warming and accelerated glacial ablation on the Central Tibetan Plateau from 2000 to 2010. Based on fieldwork involving Differential Global Positioning System (DGPS) surveying and Remote Sensing (RS) interpretations of the lake area, we have drawn the following conclusions. (1) From 1976 to 2010, the process of lake level variation in Siling Co can be divided into two stages. From 1976 to 2000, the lake level rose 4.3 m in a steady fashion (from 4530 to 4534.3 m); the rise rate was 0.18 m/a. From 2000 to 2010, the lake level rapidly rose 8.2 m (from 4534.3 to 4542.5 m), with a dramatically higher rise rate of 0.82 m/a. Compared with the rapidly increasing lake level of Siling Co from 2000 to 2010, the fluctuations observed at Co'e and Bangor Co were smooth and inconspicuous. (2) From 1976 to 2009, the lake area of Siling Co experienced a steady-rapid-steady expansion pattern. The lake area of Siling Co increased 656.64 km2 in the 34 years to 2010, a proportional growth of 39.4%. This was particularly significant in the 2000-2010 period, when the lake area of Siling Co increased by 549.77 km2, a proportional growth of 30.6%. (3) According to correlation analysis, the rise in regional temperatures, which has led to the ablation of glaciers, is the main reason for the rapid rise in Siling Co lake levels in the 10 years to 2010. During this period, Siling Co rose approximately 8 m as the direct result of glacial melting. An increase in precipitation in the Siling Co catchment area is the secondary factor. This contrasts with Bangor Co, where the dominant factor in lake level change is the long-term increase in precipitation; here, the increasing temperature is the secondary factor.
MENG KaiSHI XuHuaWANG ErchieLIU Feng
关键词:冰川消融差分全球定位系统色林错
High-altitude salt lake elevation changes and glacial ablation in Central Tibet,2000-2010
This research quantifies lake level variations in the Siling Co,Co’e and Bangor Co salt lakes in Central Tibet...
WANG Erchie
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青藏高原中部色林错湖近10年来湖面急剧上涨与冰川消融被引量:23
2012年
量化了1976~2010年间,特别是2000~2010年间西藏色林错、错鄂及班戈错的湖面面积及湖面海拔高度变化,分析了不同补给方式对湖面变化的影响,为最近10年青藏高原中东部气候变暖所致冰川加速消融提供了新证据.结合差分GPS实测湖面海拔、数字高程模型(DEM)及不同时相(1976~2009年)湖面面积的遥感解译,研究提出:(1)近40年来色林错湖面海拔高度变化过程可分为两个阶段.1976~2000年,色林错湖面海拔缓慢上升4.3m,平均0.18m/a;2000~2010年,湖面急剧上涨8.2m,平均0.82m/a.与色林错近10年湖面海拔的快速增长对比,错鄂和班戈错的湖面上升趋势缓慢且平稳.(2)1976~2009年间,色林错湖面面积变化过程经历了平稳增长→加速增长→平稳增长的变化过程.湖面总体扩大656.64km2,增长幅度为39.4%,特别是1999~2009年间,湖面急剧扩大549.77km2,增长幅度为30.6%.根据气象数据相关性及湖水水位平衡分析,近期气温升高所致上游冰川的加速消融是色林错近10年湖面快速变化的主要因素--冰川融水直接导致色林错湖面上涨约8m,降水量的增加是影响湖面变化的次要因素;而主导班戈错湖面变化的因素是长期降水量的变化,气温的影响是次要因素.
孟恺石许华王二七刘锋
关键词:色林错冰川消融
青藏高原中部色林错区域古湖滨线地貌特征、空间分布及高原湖泊演化
结合新近获得的高精度遥感影像和详细的野外调查,首次对青藏高原内部大型单个湖泊古湖滨线进行了系统的调查测量。综合色林错周边古湖滨线的地貌、沉积及地形特征,本文首次提出色林错周边区域古湖滨线从地貌上可以分为3类:1)处于高位...
孟恺石许华王二七苏哲
关键词:色林错差分GPS
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