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Impacts of Three Gorges Dam's operation on spatial-temporal patterns of tide-river dynamics in the Yangtze River estuary, China

机译:三峡大坝对长江口潮河动力学空间模式的影响

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The Three Gorges Dam (TGD), located in the main stream of the Yangtze River, is the world's largest hydroelectric station in terms of installed power capacity. It was demonstrated that the TGD had caused considerable modifications in the downstream freshwater discharge due to its seasonal operation mode of multiple utilisation for flood control, irrigation, and power generation. To understand the impacts of the freshwater regulation of the TGD, an analytical model is adopted to explore how the operation of the TGD may affect the spatial-temporal patterns of tide-river dynamics in the Yangtze River estuary. We evaluated the effect of the TGD by comparing the changes in major tide-river dynamics in the post-TGD period (2003-2014) with those in the pre-TGD period (1979-1984). The results indicate that the strongest impacts occurred during the autumn and winter, corresponding to a substantial reduction in freshwater discharge during the wet-to-dry transition period and slightly increased discharge during the dry season. The underlying mechanism leading to changes in the tide-river dynamics lies in the alteration of freshwater discharge, while the impact of geometric change is minimal. Overall, the results suggest that the spatial-temporal pattern of tide-river dynamics is sensitive to the freshwater regulation of the TGD, so that the ecosystem function of the estuary may undergo profound disturbances. The results obtained from this study can be used to set scientific guidelines for water resource management (e.g. navigation, flood control, salt intrusion) in dam-controlled estuarine systems.
机译:三峡大坝(TGD)位于长江主流,是世界上安装的电力容量方面最大的水电站。结果表明,由于洪水控制,灌溉和发电的多种利用的季节性运行方式,TGD导致下游淡水放电造成了相当大的修改。要了解TGD淡水监管的影响,采用了分析模型来探讨TGD的运作如何影响长江口中潮汐河流动力学的空间模式。我们通过比较TGD期间(2003-2014)在TGD期间(1979-1984)中的主要潮汐河流动态的变化来评估TGD的影响。结果表明,秋季和冬季发生最强的影响,对应于湿到干燥过渡期间的淡水放电大幅度降低,干燥季节略微增加。导致潮汐河流动力学变化的潜在机制在于淡水放电的改变,而几何变化的影响是最小的。总体而言,结果表明,潮汐河流动力学的空间模式对TGD的淡水调节敏感,因此河口的生态系统函数可能发生深刻的紊乱。本研究中获得的结果可用于设定水域管理(例如导航,防洪,盐侵入)的科学指南。

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    《Ocean science》 |2019年第3期|共17页
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  • 正文语种 eng
  • 中图分类 海洋学;
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