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Hydrologic Alteration Associated with Dam Construction in a Medium-Sized Coastal Watershed of Southeast China

机译:中国东南沿海中小流域水坝建设的水文变化

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Sustainable water resource management requires dams operations that provide environmental flow to support the downstream riverine ecosystem. However, relatively little is known about the hydrologic impact of small and medium dams in the smaller basin in China. Flow duration curve, indicators of hydrologic alteration andrange of variability approach were coupled in this study to evaluate the pre- and post-impact hydrologic regimes associated with dam construction using 44 years (1967–2010) of hydrologic data in the Jiulong River Watershed (JRW), a medium-sized coastal watershed of Southeast China, which suffered from intensive cascade damming. Results showed that the daily streamflow decreased in higher flow while daily streamflow increased in lower flow in both two reaches of the JRW. The dams in the North River tended to store more water while the dams in the West River tended to release more water. The mean daily streamflow increased during July to January while decreased during February to May after dam construction in both two reaches of the JRW. After dam construction, the monthly streamflow changed more significantly and higher variability of monthly streamflow exhibited in the West River than in the North River. The homeogenizing variability of monthly streamflow was observed in both two reaches of the JRW. The earlier occurrence time of extreme low streamflow event and later occurrence time of extreme high streamflow event exhibited after dams construction. The extreme low and high streamfow both decreased in the North River while both increased in the West River of the JRW. All of the indicators especially for the low pulse count (101.8%) and the low pulse duration (?62.1%) changed significantly in the North River. The high pulse count decreased by 37.1% in the West River and the count of low pulse increased abnormally in the North River. The high pulse duration in the post-impact period increased in the two reaches of JRW. The rise rate decreased by 26.9% and 61.0%,and number of reversals increased by 40.7% and 46.4% in the North River and West River, respectively. Suitable ranges of streamflow regime in terms of magnitude, rate, and frequency were further identified for environmental flow management in the North River and West River. This research advances our understanding of hydrologic impact of small and medium dams in the medium-sized basin in China.
机译:可持续的水资源管理需要大坝运作,这些大坝必须提供环境流量以支持下游河流生态系统。但是,对中国较小流域中小型水坝的水文影响知之甚少。结合九龙江流域(JRW)44年(1967-2010年)的水文数据,结合水流持续时间曲线,水文变化指标和变异性方法的范围,以评估与大坝建设相关的撞击前后水文状况。 ),是中国东南部的一个中型沿海流域,遭受了密集的梯级筑坝。结果表明,在JRW的两个河段,日流量都以较高的流量减少,而日流量则以较低的流量增加。北河大坝倾向于储存更多的水,而西河大坝倾向于释放更多的水。在JRW的两个河段都建造了大坝之后,7月至1月的平均日流量增加了,而2月至5月的日平均流量则减少了。大坝建设后,西河的月流量变化比北河大得多,并且月流量变化更大。在JRW的两个河段均观察到月流量的同源变化。大坝施工后,出现了极低流量事件的较早发生时间和极高流量事件的较晚发生时间。 JRW的北河的极端低流量和高流量都减少了,而西河的西流都增加了。在北河,所有特别是低脉冲数(101.8%)和低脉冲持续时间(?62.1%)的指标都发生了显着变化。西河高脉冲数下降37.1%,北河低脉冲数异常增加。撞击后两个时期的高冲击持续时间在撞击后时期增加。北河和西河的上升速度分别下降了26.9%和61.0%,逆转次数分别增长了40.7%和46.4%。为确定北河和西河的环境流量,进一步确定了流量的大小,速率和频率范围。这项研究提高了我们对中国中型盆地中小型水坝水文影响的认识。

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