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基于生态的缓解调峰影响标准:综述。

Ecologically-based criteria for hydropeaking mitigation: A review.

机构信息

CERIS - Civil Engineering Research and Innovation for Sustainability, Instituto Superior Técnico, University of Lisbon, Portugal.

CEF - Forest Research Center, Instituto Superior de Agronomia, University of Lisbon, Portugal; Institute of Hydrobiology and Aquatic Ecosystem Management, University of Natural Resources and Life Sciences, Vienna, Austria.

出版信息

Sci Total Environ. 2019 Mar 20;657:1508-1522. doi: 10.1016/j.scitotenv.2018.12.107. Epub 2018 Dec 11.

Abstract

Hydroelectric power plants managed in response to sub-daily changes of the electricity market undergo rapid variations of turbine discharge, entailing quickly fluctuating water levels downstream. This operation regime, called hydropeaking, causes numerous adverse impacts on river ecosystems. The hydrological alterations which affect hydropeaking rivers can be described by five parameters that change over space and time (magnitude, rate of change, frequency, duration, and timing), where each parameter may be correlated with distinct environmental impacts and therefore may be used to define flow thresholds and set targets for operational mitigation strategies. Thus, this study aims to present an extensive review on the so far established hydropeaking targets and thresholds regarding the outputs from the scientific community as well as from national regulations. We found that only few European countries (Switzerland and Austria) have legal regulations regarding hydropeaking flow thresholds. Other countries, such as Canada and the USA, present environmental legislation that can force hydropeaking mitigation measures. Most mitigation thresholds and management recommendations in literature deal with the effect of downramping on the stranding of salmonids, as well as with minimum flows between peak-flows to avoid spawning ground desiccation. Regarding other fish species and parameters, information on mitigation targets or thresholds is scarcer or non-existent, as well as on hydropeaking mitigation case-studies, resulting in a lack of knowledge and guidelines for its implementation or regulation. Nevertheless, the available literature indicates that multiple aspects must be considered when assessing such values. Thus, to aid in that process, we propose that mitigation targets and thresholds must be based on key species, including particular features regarding season, life-stage and time of day, which must be combined with site-specific morphological characteristics. The presented approach may benefit impacted organism groups in hydropeaking reaches through the establishment of ecologically-based relevant mitigation thresholds and/or targets.

摘要

水力发电厂根据电力市场的亚日变化进行管理,经历了涡轮机流量的快速变化,导致下游水位迅速波动。这种被称为“调峰”的运行模式对河流生态系统造成了许多不利影响。影响调峰河流的水文变化可以用五个在空间和时间上变化的参数来描述(幅度、变化率、频率、持续时间和时间安排),其中每个参数都可能与不同的环境影响相关,因此可以用来定义流量阈值并为运营缓解策略设定目标。因此,本研究旨在广泛回顾迄今为止科学界以及国家法规中确立的调峰目标和阈值。我们发现,只有少数欧洲国家(瑞士和奥地利)有关于调峰流量阈值的法律规定。其他国家,如加拿大和美国,都有环境法规,可以强制采取调峰缓解措施。文献中大多数缓解阈值和管理建议都涉及到缓降对鲑鱼搁浅的影响,以及为避免产卵场干涸而在峰值流量之间保持最小流量。至于其他鱼类物种和参数,关于缓解目标或阈值的信息较少或不存在,也没有调峰缓解案例研究,导致缺乏实施或监管的知识和指导方针。然而,现有文献表明,在评估这些值时必须考虑多个方面。因此,为了帮助这个过程,我们建议缓解目标和阈值必须基于关键物种,包括与季节、生命阶段和一天中的时间有关的特定特征,这些特征必须与特定地点的形态特征相结合。所提出的方法可以通过建立基于生态的相关缓解阈值和/或目标,使受调峰影响的生物群体受益。

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