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Water level variation characteristics under the impacts of extreme drought and the operation of the Three Gorges Dam

机译:三峡大坝和极端干旱影响下的水位变化特征

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摘要

Under the influence of a climate of extreme drought and the Three Gorges Dam (TGD) operation, the water levels in the middle and lower reaches of the Yangtze River in 2006 and 2011 changed significantly compared with those in the extreme drought years of 1978 and 1986. To quantitatively analyze the characteristics of water level variations in 2006 and 2011, a new calculation method was proposed, and the daily water level and discharge from 1955-2016 were collected in this study. The findings are as follows: in 2006 and 2011, the water level in the dry season significantly increased, but that in the flood season obviously decreased compared with the levels in 1978 and 1986. Here, we described this phenomenon as "no low-water-level in dry season, no high-water-level in flood season". Based on the calculation method, the contributions of climate variability and the Three Gorges Dam operation to water level variations in the middle and lower reaches of the Yangtze River were calculated, and the contributions indicated that climate variability was the main reason for the phenomenon of "no low-water-level in dry season, no high-water-level in flood season" instead of flood peak reduction in the flood season and drought runoff implementation in the dry season, which are both induced by TGD.
机译:在极端干旱和三峡大坝运行的影响下,与1978年和1986年的极端干旱年份相比,2006年和2011年长江中下游的水位发生了显着变化。为了定量分析2006年和2011年的水位变化特征,提出了一种新的计算方法,并收集了1955-2016年的每日水位和流量。研究结果如下:与1978年和1986年相比,2006年和2011年的旱季水位明显增加,而汛期的水位明显下降。在此,我们将此现象描述为“无低水位”。干旱季节水位高,汛期没有高水位”。根据计算方法,计算了气候变化和三峡大坝运行对长江中下游水位变化的贡献,这些贡献表明气候变化是造成“中游”现象的主要原因。 TGD导致了旱季洪水高峰减少和旱季干旱径流的实施,而旱季没有低水位,汛期没有高水位”。

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