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Destratification and oxygenation efficiency of a water-lifting aerator system in a deep reservoir: Implications for optimal operation

机译:深层水库中水提升曝气器系统的消防和氧化效率:最佳运行的影响

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摘要

Thermal stratification is a common phenomenon in lakes and reservoirs and has a significant influence on water quality dynamics. Heihe Reservoir is a canyon-shaped reservoir in Shaanxi Province with strong thermal stratification. Therefore, eight water-lifting aerators (WLAs) were installed in this reservoir, which could overcome thermal stratification and increase oxygenation with gas flows between 20 and 50 m(3)/hr, and oxygenate the hypolimnion with gas flows less than 20 m(3)/hr. To examine the destratification efficiency of the WLA system, we used a three-dimensional hydrodynamic module based on MIKE 3 to simulate the thermal structure of Heihe Reservoir and compared the simulations with measured data. Results showed that operation of the WLA system promoted water mixing and effectively oxygenated the hypolimnion. Through the established energy utilization assessment method, the energy utilization efficiency of the WLA system was between 5.36% and 7.30%, indicating the capability of the technique for destratification in such a large reservoir. When the surface water temperature dropped to the theoretical mixed water temperature calculated by the energy utilization assessment method, reducing gas flow could save energy. This would prevent anaerobic conditions from occurring in the bottom water and maintain good water quality in Heihe Reservoir. (C) 2018 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:热分层是湖泊和储层中的常见现象,对水质动力学产生了重大影响。黑河水库是陕西省的峡谷形水库,具有强大的热分层。因此,在该储存器中安装了八个水提升曝气器(WLA),这可能克服热分层,并在20至50μm(3)/ hr之间的气体流动增加氧气,并使低于20μm的气体流量的氧气含氧化物含量3)/人力资源。为了检查WLA系统的破坏效率,我们使用了基于MIKE 3的三维流体动力模块来模拟黑河水库的热结构,并将模拟与测量数据进行比较。结果表明,WLA系统的操作促进了水混合,有效地氧化了低聚。通过既定的能量利用评估方法,WLA系统的能量利用效率在5.36%和7.30%之间,表明该技术在这种大型水库中的废弃能力的能力。当表面水温降至通过能量利用评估方法计算的理论混合水温时,降低气流可以节省能量。这将防止厌氧条件发生在底水中,并在黑河水库中保持良好的水质。 (c)2018中国科学院生态环境科学研究中心。 elsevier b.v出版。

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