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Linking Three Gorges Dam and downstream hydrological regimes along the Yangtze River, China

机译:将三峡大坝与长江沿岸下游水文情势联系起来

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AbstractThe magnitude of anthropogenic influence, especially dam regulation, on hydrological system is of scientific and practical value for large river management. As the largest dam in the world by far, Three Gorges Dam (TGD) is expected to be a strong evidence on dam impacts on downstream hydrological regime. In this study, statistical methods are performed on the pre- and post-TGD daily hydrological data at Yichang, Hankou, and Datong stations to detect the daily, monthly, yearly, and spatial fluctuations in river hydrology along the Yangtze River during the period of 2000–2013. It is found that TGD makes a significant hydrological variation along the Yangtze River following the dam operation since 2003. Specifically, the daily discharge and water level are gathered to normal event ranges with less extreme events than before 2003. Both maximum and minimum daily water levels at the study stations have decreased due to TGD-induced riverbed incision. The operation of TGD shifts the maximum monthly discharge and water level from August to July at Yichang station. The significance of TGD effect on discharge and water level relationship presents spatial variation. The rating curves at upstream reach experience the most significant effects with a substantial upward shift, while those at lower reach only suggest slight modification. Of the potential drivers considered in this study, dam regulation is responsible for the changes in downstream river hydrology. Moreover, the tributary and adjoining riparian lakes of the Yangtze River contribute to weaken the effect of TGD on downstream hydrological behavior.
机译:摘要人为因素对水文系统的影响,特别是大坝调节,对大河流域管理具有科学和实用价值。作为目前为止世界上最大的水坝,三峡大坝(TGD)有望成为水坝对下游水文情势影响的有力证据。在这项研究中,对宜昌,汉口和大同站TGD前后的每日水文数据进行了统计方法,以检测长江流域在此期间长江水文的日,月,年和空间波动。 2000年至2013年。研究发现,自2003年以来,大坝运行后,长江三角洲的TGD发生了很大的水文变化。具体地说,日排放量和水位被收集到正常事件范围内,而极端事件少于2003年之前。最大和最小每日水位由于TGD引起的河床切口,研究站的数量有所减少。 TGD的运行将宜昌站的最大月排放量和水位从8月转移到7月。 TGD对流量和水位关系的影响具有显着的空间差异。上游河段的评级曲线经历了最显着的影响,即向上移动,而下游河段的评级曲线仅表明有轻微的变化。在本研究中考虑的潜在驱动因素中,大坝调节是造成下游河流水文学变化的原因。此外,长江的支流湖和毗连河岸的湖水也削弱了三峡三角洲治理对下游水文行为的影响。

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