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首页> 外文期刊>The Science of the Total Environment >Evaluation of mitigation measures to reduce hydropeaking impacts on river ecosystems - a case study from the Swiss Alps
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Evaluation of mitigation measures to reduce hydropeaking impacts on river ecosystems - a case study from the Swiss Alps

机译:评估减少水高峰对河流生态系统影响的缓解措施-以瑞士阿尔卑斯山为例

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New Swiss legislation obligates hydropower plant owners to reduce detrimental impacts on rivers ecosystems caused by hydropeaking. We used a case study in the Swiss Alps (hydropower company Kraftwerke Oberhasli AG) to develop an efficient and successful procedure for the ecological evaluation of such impacts, and to predict the effects of possible mitigation measures. We evaluated the following scenarios using 12 biotic and abiotic indicators: the pre-mitigation scenario (Le. current state), the future scenario with increased turbine capacity but without mitigation measures, and future scenarios with increased turbine capacity and four alternative mitigation measures. The evaluation was based on representative hydrographs and quantitative or qualitative prediction of the indicators. Despite uncertainties in the ecological responses and the future operation mode of the hydropower plant, the procedure allowed the most appropriate mitigation measure to be identified. This measure combines a basin and a cavern at a total retention volume of 80,000 m~3, allowing for substantial dampening in the flow falling and ramping rates and in turn considerable reduction in stranding risk for juvenile trout and in macroinvertebrate drift. In general, this retention volume had the greatest predicted ecological benefit and can also, to some extent, compensate for possible modifications in the hydropower operation regime in the future, e.g. due to climate change, changes in the energy market, and changes in river morphology. Furthermore, it also allows for more specific seasonal regulations of retention volume during ecologically sensitive periods (e.g. fish spawning seasons). Overall experience gained from our case study is expected to support other hydropeaking mitigation projects.
机译:瑞士的新立法要求水力发电厂的所有者减少水峰造成的对河流生态系统的不利影响。我们在瑞士阿尔卑斯山(一家水电公司Kraftwerke Oberhasli AG)中进行了案例研究,以开发一种有效而成功的程序来对此类影响进行生态评估,并预测可能采取的缓解措施的效果。我们使用12种生物和非生物指标评估了以下情景:缓解前情景(当前状态),具有增加的风机容量但未采取缓解措施的未来方案,以及具有增加的风机容量和四种替代缓解措施的未来方案。评估基于代表性水文图和指标的定量或定性预测。尽管在水电站的生态响应和未来运行模式方面存在不确定性,该程序仍可确定最合适的缓解措施。该措施结合了盆地和洞穴,总保留体积为80,000 m〜3,可显着抑制流量的下降和上升速度,进而显着降低幼鳟和大型无脊椎动物漂移的搁浅风险。通常,该保留量具有最大的预计生态效益,并且在某种程度上还可以补偿未来水电运行方式的可能修改,例如,由于气候变化,能源市场的变化以及河流形态的变化。此外,它还允许在生态敏感时期(例如鱼类产卵季节)制定更具体的保留量季节性规定。从我们的案例研究中获得的总体经验预计将支持其他减水峰项目。

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