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Assessment of Hydrologic Alterations Caused by the Three Gorges Dam in the Middle and Lower Reaches of Yangtze River, China

机译:长江中下游三峡大坝引起的水文变化评价

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Hydrologic regime plays a major role in structuring biotic diversity within river ecosystems by controlling key habitat conditions within the river channel and floodplain. Daily flow records from seven hydrological stations and the range of variability approach were utilized to investigate the variability and spatial pattern of the hydrologic alterations induced by the construction of the Three Gorges Dam (TGD) in the middle and lower reaches of the Yangtze River, China. Results show that the impoundment of the TGD disturbed the hydrologic regime downstream and directly affected the streamflow variations. The rate of changes and the annual extreme conditions were more affected by the TGD, particularly the low-flow relevant parameters. The alterations in the hydrologic regime were mainly caused by the TGD storing water during early autumn and releasing water during winter and spring. The effects on spatial patterns decreased as the distance from the dam increased, which was mainly attributed to the inflows from large tributaries along the Yangtze River as well as the interaction with the two largest natural lakes (i.e., Dongting Lake and Poyang Lake). These hydrologic alterations not only break the natural balance of eco-flow regimes but also result in undesirable ecological effects, particularly in terms of habitat availability for the fish community.
机译:通过控制河流河道和洪泛区的关键栖息地条件,水文制度在构建河流生态系统内的生物多样性方面起着重要作用。利用七个水文站的日流量记录和变异性方法研究了长江中下游三峡大坝(TGD)的建设引起的水文变化的变异性和空间格局。 。结果表明,TGD的蓄积扰乱了下游的水文情势,直接影响了流量变化。 TGD尤其是低流量相关参数对变化率和年度极端条件的影响更大。水文状况的变化主要是由于TGD在初秋储水,而在冬季和春季放水。随着距大坝距离的增加,对空间格局的影响减小,这主要归因于沿长江大支流的流入以及与两个最大的天然湖泊(洞庭湖和and阳湖)的相互作用。这些水文变化不仅破坏了生态流机制的自然平衡,而且还导致了不良的生态影响,特别是在鱼类群落的栖息地可利用性方面。

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