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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >In situ characterization of turbine hydraulic environment to support development of fish-friendly hydropower guidelines in the lower Mekong River region
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In situ characterization of turbine hydraulic environment to support development of fish-friendly hydropower guidelines in the lower Mekong River region

机译:汽轮机液压环境的原位特点,以支持湄公河下湄公河地区鱼类友好水电指南的发展

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摘要

The Mekong River is one of the most biodiverse rivers on Earth. Many communities located near the river rely on fisheries for sustenance and economics. Along the Mekong River mainstem there are plans for 11 new hydropower projects, with potentially several hundred smaller projects along tributaries. To understand the hydraulic conditions at existing dams in the region, Sensor Fish were deployed at Nam Ngum Dam in Laos. The data collected by Sensor Fish can be used to predict fish injury/mortality if there is a dose-response relationship for the species of interest. The Sensor Fish were released through two units-Unit 1, an older 17.5-MW Francis turbine, and Unit 4, a newer 40-MW Francis turbine. Comparisons were made between the Sensor Fish measurements at Nam Ngum to those from four hydroelectric dams in the U.S. Between the newer and older turbine units tested at Nam Ngum, the newer Unit 4 had a higher median nadir pressure of 126 kPaA compared to 99 kPaA. With respect to both pressure and acceleration, the older Unit 1 had more severe hydraulic conditions. By understanding the physical conditions within existing hydropower projects, and the potential ecological impact those conditions could have on the local fauna, better informed decisions can be made regarding project operations. The results from this study can also be used to guide the engineering design of new hydropower turbines that will improve ecological conditions.
机译:湄公河是地球上最具生物相比的河流之一。许多社区位于河附近,依靠渔业进行寄托和经济。沿着湄公河主干,有11个新的水电项目计划,沿着支流的潜在数百个较小的项目。要了解该地区现有水坝的液压条件,传感器鱼在老挝Nam Ngum坝​​上部署。如果感兴趣的物种存在剂量 - 反应关系,传感器鱼收集的数据可用于预测鱼损伤/死亡率。传感器鱼被释放到两个单元1,较旧的17.5兆瓦弗朗西斯涡轮机和单元4,一个更新的40-MW竞技涡轮机。在NAM NGUM的传感器鱼测量与来自美国的四个水电坝之间的传感器鱼测量之间进行比较。与99kPaa相比,较新单元4具有126kPaa的更高中值Nadir压力。关于压力和加速度,较旧的单元1具有更严重的液压条件。通过了解现有水电项目内的物理条件,潜在的生态影响这些条件可能会对当地的动物区内有更好的知情决定,可以就项目行动作出。本研究的结果也可用于指导新的水电涡轮机的工程设计,从而改善生态条件。

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