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Evaluation of ecological instream flow using multiple ecological indicators with consideration of hydrological alterations

机译:考虑水文变化的多种生态指标评价生态入流

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Dam-induced hydrological alterations and related ecological problems have been arousing considerable concern from hydrologists, ecologists, and policy-makers. The East River basin in China is the major provider of water resources for mega-cities within the Pearl River Delta and meets 80% of annual water demand of Hong Kong. In this study, ecodeficit and ecosurplus were analyzed to determine the ecological impact of water impoundments. Also, D-o and DHRAM were employed to evaluate the degree of alteration of hydrological regimes, and ERHIs were analyzed to evaluate the influence of hydrological alterations on ecological diversity. Results indicate that: (1) the magnitude and frequency of high flows decrease and those of low flows increase due to the regulation of reservoirs; (2) variations of annual ecosurplus are mainly the result of precipitation changes and the annual ecodeficit is significantly influenced by reservoirs. However, ecodeficit and ecosurplus in other seasons, particularly autumn and winter, are more influenced by reservoir regulation; (3) impacts of reservoirs on hydrological regimes and eco-flow regimes are different from one station to another due to different degrees of influence of reservoirs on hydrological processes at different stations. The longer the distance between a reservoir and a hydrological station is, the weaker the influence the water reservoir has on the hydrological processes; (4) ecodeficit and ecosurplus can be accepted in the evaluation of alterations of hydrological processes at annual and seasonal time scales. Results of Shannon Index indicate decreasing biological diversity after the construction of water reservoirs, implying negative impacts of water reservoirs on biological diversity of a river basin and this should arouse considerable human concerns. This study provides a theoretical background for water resources management with consideration of eco-flow variations due to reservoir regulation in other highly-regulated river basins of the globe. (C) 2015 Elsevier B.V. All rights reserved.
机译:大坝引起的水文变化和相关的生态问题引起了水文学家,生态学家和决策者的极大关注。中国的东江流域是珠江三角洲特大城市的主要水资源提供者,可满足香港每年80%的用水需求。在这项研究中,对生态赤字和生态盈余进行了分析,以确定水库的生态影响。此外,还使用D-o和DHRAM评估水文状况的变化程度,并分析了ERHI以评估水文变化对生态多样性的影响。结果表明:(1)由于水库的调整,高流量的幅度和频率减小,低流量的幅度和频率增大; (2)年生态盈余的变化主要是降水变化的结果,年生态赤字受储层的影响很大。但是,其他季节,特别是秋季和冬季,生态赤字和生态盈余受储层调节的影响更大; (3)由于不同站点水库对水文过程的影响程度不同,一个站点之间水库对水文状况和生态流量状况的影响是不同的。水库与水文站之间的距离越长,水库对水文过程的影响就越弱。 (4)生态赤字和生态盈余在年度和季节尺度的水文过程变化评估中可以被接受。香农指数的结果表明,水库建成后,生物多样性正在下降,这意味着水库对流域生物多样性的负面影响,这应该引起人们的广泛关注。这项研究为水资源管理提供了理论背景,同时考虑了全球其他高度管制河流流域由于水库调节而引起的生态流量变化。 (C)2015 Elsevier B.V.保留所有权利。

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