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刘小华, 魏炳乾, 黄 磊, 刘 星, 李杰伟, 刘艳梅.水库壅水对水源地水环境的影响研究水资源与水工程学报[J].,2020,31(2):57-64
水库壅水对水源地水环境的影响研究
Study on the influence of reservoir backwater on water environment of the affected water source area
  
DOI:10.11705/j.issn.1672-643X.2020.02.09
中文关键词:  水库壅水  水源地  水动力  水质预测  风险评估  旬阳水电站
英文关键词:backwater of reservoir  water source area  hydrodynamics  water quality prediction  risk assessment  Xunyang Hydropower Station
基金项目:陕西水利科技计划项目(2014skj-14);陕西省教育厅科学研究计划项目(JK0739)
作者单位
刘小华1, 魏炳乾1, 黄 磊1, 刘 星2, 李杰伟2, 刘艳梅2 (1. 西安理工大学 省部共建西北旱区生态水利国家重点实验室 陕西 西安 7100482.安康市住房和城乡建设局 陕西 安康 725000) 
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中文摘要:
      水电站的修建会改变天然河道原本的水文情势和水环境状况,研究水电站建成后对水源地河段的壅水影响,以及对该河段的水质影响极为必要。以汉江拟建的旬阳水电站对马坡岭取水口的影响为例,采用二维水动力模型耦合ECOLab水质模型模拟计算了6种工况,对比建库前后取水口处流场分布以及化学需氧量(COD)、溶解氧(DO)、氨氮(NH3—N)等水质指标浓度分布,并对建库后的不同工况进行了水质的风险评估。结果表明:建库后取水口的流速在各工况均有不同程度的下降,与天然河道相比,建库后取水口的水质指标浮动较小且均在地表水环境质量Ⅱ类标准以内;风险工况下,取水口的水质指标均远超地表水环境质量Ⅱ类标准限值,取水安全已无法得到保障。针对风险工况给出了建议,即上游安康大坝及时泄水,为提出拟建水电站库区壅水区内取水口的保护措施提供了理论依据。
英文摘要:
      The construction of hydropower stations will change the original hydrological situation and water environment of the natural river channels, it is necessary to study the backwater effect on the downstream section of the hydropower station caused by its operation and the impact on the water quality of the river. Taking the proposed Xunyang Hydropower Station in Hanjiang River as the study object, we analyzed its impact on the water intake of Mapoling. ECOLab water quality model, which is coupled with two-dimensional hydrodynamic model, was used to simulate and calculate six working conditions. The distribution of flow field and the concentration distribution of chemical oxygen demand (COD), dissolved oxygen (DO) and ammonia nitrogen (NH3—N) at the water intake before and after the construction of the reservoir were compared, and the risk assessment of water quality after the construction of the reservoir was conducted. The results showed that the flow velocity of the water intake reduced to different extents. Compared with the natural river channel, the water quality index of the water intake after the construction of the reservoir only fluctuated slightly and was within the range of the surface water environmental quality class II standard. Under risk conditions, the values of water quality indicators of the water intake were far beyond the limit of surface water environmental quality class II standard, and the safety of water intake could not be guaranteed. It is suggested that Ankang Dam in the upstream of Hanjiang River should discharge water timely. This proposal can provide a theoretical basis for the protection measures of the water intake in the reservoir area of the proposed hydropower station.
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