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Assessment of land use/land cover dynamics of Tso Moriri Lake, a Ramsar site in India

机译:印度拉姆萨尔省Tso Moriri湖的土地利用/土地覆盖动态评估

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摘要

Wetlands accounts for 6% area of the Earth's land cover and nearly 17% of the Hindu Kush Himalayan region. They are of utmost importance to climate dynamics and are critical links between terrestrial and aquatic ecosystems. Despite the need of high attention towards conserving and managing wetland resources, mapping them is a least practiced activity. This study shows the temporal change in land use and land cover pattern of Tso Moriri Lake, the highest altitude lake in India and designated as Ramsar site in year 2002, using multi-sensor and multi-date imagery. Due to change in hydro-meteorological conditions of the region, this lake area has been reduced. Since the lake recharge is dependent on snowmelt, hence change in climatic conditions (less snowfall in winters), to a certain extent, is also responsible for the decrease in water level and water spread of the lake. The result shows that the lake area has reduced approximately 2 km(2) in the last 15 years, and also, agriculture, grasslands, and vegetation cover have increased to a significant extent. Agricultural land and grasslands have doubled while the vegetation cover has increased more than six times, showing the coupled effect of climate change and anthropogenic activities. Trend of temperature and precipitation corroborates the effects of climate change in this region.
机译:湿地占地球土地面积的6%,占兴都库什喜马拉雅地区的近17%。它们对于气候动态至关重要,是陆地和水生生态系统之间的关键纽带。尽管需要高度重视保护和管理湿地资源,但对湿地资源进行绘制是一项实践最少的活动。这项研究使用多传感器和多日期影像显示了印度最高海拔的Tso Moriri湖(2002年被指定为Ramsar站点)的土地利用和土地覆盖格局的时空变化。由于该地区水文气象条件的变化,该湖面积已减少。由于湖泊的补给依赖于融雪,因此气候条件的变化(冬季降雪较少)在一定程度上也导致了湖泊水位的下降和水的扩散。结果表明,在过去的15年中,湖泊面积减少了约2 km(2),并且农业,草原和植被的覆盖率也有显着增加。农业用地和草地增加了一倍,植被覆盖率增加了六倍以上,显示出气候变化和人为活动的耦合作用。温度和降水的趋势证实了该地区气候变化的影响。

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