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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The optimal power generation operation of a hydropower station for improving fish shelter area of low TDG level
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The optimal power generation operation of a hydropower station for improving fish shelter area of low TDG level

机译:水电站改善低TDG水平鱼类收容所的最佳发电操作

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Supersaturated TDG problem has become a serious potential threat to aquatic life on dammed rivers. With the aim to mitigate the impact of supersaturated TDG and improve the fish shelter area, the optimal power generation operation of a hydropower station was explored. In order to consider the TDG mixing process of the tailwater and the spill discharge, a two-dimensional supersaturated TDG transport diffusion model was established. The simulation result of the model was validated by the monitored field data of Xiangjiaba (XJB) hydropower project. Different scheduling schemes of the power generation and spill of Xiluodu (XLD) (upstream of XJB project) and XJB projects were simulated to investigate the TDG distribution downstream of XJB. Based on the simulation results, fish shelter areas of different scheduling schemes were analyzed. Simulation results showed that the generation scheduling of XJB could be optimized in order to expand the fish shelter area. First of all, the powerhouses on both sides for XJB project are recommended to operated as far as possible. In the event of the powerhouse alternatives have to be made between the left powerhouse and right powerhouse, the powerhouse on the right side is recommended due to minor low TDG area. The results show the high significance and practical value of identifying the fish shelter area against the impact of supersaturated TDG under different schemes of power generation and provide vital information for fish protection downstream of a high dam.
机译:过度饱和的TDG问题已成为渔村水生生活的严重潜在威胁。旨在减轻超饱和TDG的影响并改善鱼类避难所地区,探索了水电站的最佳发电操作。为了考虑尾水和溢出放电的TDG混合过程,建立了一种二维超饱和TDG传输扩散模型。通过Xiangjiaba(XJB)水电项目的监控现场数据验证了模型的仿真结果。模拟了Xiluodu(XLD)的发电和溢出的不同调度方案(XJB项目的上游)和XJB项目,以研究XJB下游的TDG分布。基于仿真结果,分析了不同调度方案的鱼类庇护所。仿真结果表明,XJB的产生调度可以优化,以扩大鱼类避难所。首先,建议尽可能为XJB项目进行XJB项目的Powershouses。在左侧厂房和右侧强力厂之间必须在左侧厂房和右侧推荐的情况下,由于较小的低TDG区域,建议右侧的电站。结果表明,在不同的发电方案下鉴定了抗鱼类遮蔽区的高意义和实用价值,并为高坝下游提供了鱼保护的重要信息。

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