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Ecohydrological Impacts of Two Large Cascade Reservoirs in the Middle Yellow River, China

机译:两大级联水库在黄河中黄河中的生态学影响

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摘要

The Yellow River is the second largest river in China, providing precious water resources to ecosystems in northern China. The Sanmenxia and Xiaolangdi are two large cascade reservoirs in the middle Yellow River that have significantly altered the regional ecohydrological conditions. Multiple methods, including the sequential Mann-Kendall test, range of variation approach, and ecoflows based on flow duration curves, were used to assess the ecohydrological impacts of the two reservoirs. Results indicated that (1) in detecing impact years by the sequential Mann-Kendall test, the minimum daily discharge of each year performed better than the maximum, mean, and median daily discharges of earch year; (2) the delay in the date of minimum flow caused by the Sanmenxia Reservoir and the advance in the date of maximum flow caused by the Xiaolangdi Reservoir had a serious effect on some native fish species; (3) the integrated hydrological changes caused by the Sanmenxia Reservoir and Xiaolangdi Reservoir were 30.91% and 51.39%, respectively; (4) the Sanmenxia Reservoir amplified the annual ecodeficit, whereas the Xiaolangdi Reservoir reversed the annual ecosurplus from a decreasing to an increasing trend and the annual ecodeficit from an increasing to decreasing trend; and (5) the autumn ecoflows experienced the greatest impact, with accompanying deterioration, although the Xiaolangdi Reservoir reduced the increasing rate of autumn ecodeficit and radically improved the previous unfavorable conditions in other seasons. The results shed new light on the ecohydrological impacts of large dams and are beneficial for the restoration of the aquatic ecosystems in the lower Yellow River.
机译:黄河是中国第二大河流,为中国北方的生态系统提供珍贵的水资源。三门峡和小浪迪是中黄河中的两个大型级联水库,显着改变了区域生态学条件。使用多种方法,包括顺序MANN-KENDALL测试,变异方法范围和基于流动持续时间曲线的生物传递,用于评估两个储存器的生态效果。结果表明(1)在按顺序曼肯海肯德试验撤离影响年,每年的最低日卸货比艾奇年的最大,平均值和日常排放量好; (2)Sanmenxia储层造成的最低流量日期的延迟和小浪液储层引起的最大流量日期对某些本土鱼类产生严重影响; (3)Sanmenxia水库和小浪迪水库造成的综合水文变化分别为30.91%和51.39%; (4)三门峡水库增大了年度潮流,而Xiaolangdi水库从减少到日益增长的趋势和年度潮流的趋势下降,Xiaolangdi水库从趋势上升到趋势下降; (5)秋季Ecoflows经历了最大的影响,伴随着恶化,尽管Xiaolangdi水库降低了秋季潮流的增加,并从根本上改善了其他季节的不利条件。结果揭示了大型水坝的生态学影响,有利于恢复下黄河水生生态系统。

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  • 来源
    《Journal of hydrologic engineering》 |2021年第11期|05021029.1-05021029.12|共12页
  • 作者单位

    Key Research Institute of Yellow River Civilization and Sustainable Development Henan Univ. 85 MingLun St. Kaifeng 475001 China;

    Yellow River Institute of Hydraulic Research 45 ShunHe Rd. Zhengzhou 450003 China;

    Yellow River Institute of Hydraulic Research 45 ShunHe Rd. Zhengzhou 450003 China;

    Key Research Institute of Yellow River Civilization and Sus-tainable Development Henan Univ. 85 MingLun St. Kaifeng 475001 China;

    School of Information Technology Henan Univ. of Chinese Medicine 156 JinshuiDong Rd. Zhengzhou 450046 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Xiaolangdi Reservoir; Sanmenxia Reservoir; Yellow River; Hydrological conditions; Ecoflows;

    机译:Xiaolangdi水库;Sanmenxia水库;黄河;水文条件;eCoflows.;

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