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水跃流对鲑科鱼类早期生活阶段的水文和热效应:实施缓解策略的建模方法。

Hydrological and thermal effects of hydropeaking on early life stages of salmonids: A modelling approach for implementing mitigation strategies.

机构信息

Department of Infrastructure Engineering, The University of Melbourne, 3010, Victoria, Australia.

Freshwater and Inland Fisheries Laboratory (LFI), Natural History Museum, University of Oslo, N-0562, Norway.

出版信息

Sci Total Environ. 2016 Dec 15;573:1660-1672. doi: 10.1016/j.scitotenv.2016.09.208. Epub 2016 Oct 5.

Abstract

Alterations in hydrological and thermal regimes can potentially affect salmonid early life stages development and survival. The dewatering of salmon spawning redds due to hydropeaking can lead to mortality in early life stages, with higher impact on the alevins as they have lower tolerance to dewatering than the eggs. Flow-related mitigation measures can reduce early life stage mortality. We present a set of modelling tools to assess impacts and mitigation options to minimise the risk of mortality in early life stages in hydropeaking rivers. We successfully modelled long-term hydrological and thermal alterations and consequences for development rates. We estimated the risk of early life stages mortality and assessed the cost-effectiveness of implementing three release-related mitigation options (A,B,C). The economic cost of mitigation was low and ranged between 0.7% and 2.6% of the annual hydropower production. Options reducing the flow during spawning (B and C) in addition to only release minimum flows during development (A) were considered more effective for egg and alevin survival. Options B and C were however constraint by water availability in the system for certain years, and therefore only option A was always feasible. The set of modelling tools used in this study were satisfactory and their applications can be useful especially in systems where little field data is available. Targeted measures built on well-informed modelling tools can be tested on their effectiveness to mitigate dewatering effects vs. the hydropower system capacity to release or conserve water for power production. Environmental flow releases targeting specific ecological objectives can provide better cost-effective options than conventional operational rules complying with general legislation.

摘要

水文和热条件的改变可能会影响鲑鱼早期生活阶段的发育和生存。由于水跃现象导致鲑鱼产卵床脱水,可能会导致早期生活阶段的死亡,幼鱼的影响更大,因为它们比卵子更不耐脱水。与水流相关的缓解措施可以降低早期生活阶段的死亡率。我们提出了一系列建模工具,以评估水跃河流中减少早期生活阶段死亡率的风险的影响和缓解选择。我们成功地模拟了长期水文和热变化及其对发育率的影响。我们估计了早期生活阶段死亡的风险,并评估了实施三种与释放相关的缓解选择(A、B 和 C)的成本效益。缓解措施的经济成本很低,介于每年水力发电生产的 0.7%和 2.6%之间。与仅在发育期间释放最小流量(A)相比,减少产卵期间流量的选择(B 和 C)被认为对卵和幼鱼的存活更有效。然而,B 和 C 选择受到系统中一定年份水资源可用性的限制,因此仅 A 选择总是可行的。本研究中使用的建模工具套件令人满意,其应用尤其在现场数据较少的系统中非常有用。基于充分了解建模工具的有针对性措施可以测试其减轻脱水效果的有效性,以及水力发电系统为发电释放或保护水资源的能力。针对特定生态目标的环境流量释放比遵守一般法规的传统运营规则提供了更好的成本效益选择。

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