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黄河源区筑坝工程对黄河裸裂尻鱼生境可持续性的评估。

Assessment of the sustainability of Gymnocypris eckloni habitat under river damming in the source region of the Yellow River.

机构信息

State Key Laboratory of Eco-hydraulics in Northwest Arid Region,Xi'an University of Technology, Xi'an, China.

State Key Laboratory of Eco-hydraulics in Northwest Arid Region,Xi'an University of Technology, Xi'an, China.

出版信息

Sci Total Environ. 2021 Jul 15;778:146312. doi: 10.1016/j.scitotenv.2021.146312. Epub 2021 Mar 9.

Abstract

The growth of indigenous fish resources in the source region of a river is dependent upon the protection and sustainable development of suitable habitats, and the dual effects of climate change and hydropower generation have a major impact on hydrodynamic conditions and living conditions in these habitats. Against a background of climate warming, an agent-based model was established using MIKE3 software and was applied to the source region of the Yellow River. Within the study area, water depth, flow velocity, water temperature, and fish distribution in fish habitats before and after implementation of an ecological scheduling scheme in the hydropower stations were compared. In this paper, the Weighted Usable Area (WUA) method was used to evaluate the habitat suitability before and after construction of the dam in order to study the impact of changes in the hydrology and water environment in the source area of the Yellow River on the survival of the indigenous fish Gymnocypris eckloni Herzensten, 1891 and its eggs, and appropriate solutions were proposed. The results showed that the spawning period of G. eckloni (Gymnocypris eckloni Herzensten) will be delayed and egg hatching will face higher risks due to the negative -effects of low water temperature caused by hydropower generation. Water warming induced by global warming is expected to eliminate this negative influence, and the inhabitable area for fish is expected to increase. This study can provide a reference for evaluating sustainable development of the whole river ecosystem under conditions of climatic change and hydropower engineering operations.

摘要

河流源头区土著鱼类资源的增长取决于对适宜生境的保护和可持续开发,气候变化和水力发电的双重影响对这些生境的水动力条件和生存条件产生重大影响。在气候变暖的背景下,使用 MIKE3 软件建立了基于主体的模型,并将其应用于黄河源区。在研究区域内,比较了水电站实施生态调度方案前后鱼类栖息地的水深、流速、水温和鱼类分布。本文采用加权可用面积(WUA)法评估了大坝建设前后的生境适宜性,以研究黄河源区水文和水环境变化对土著鱼类北方铜鱼 Gymnocypris eckloni Herzensten, 1891 及其鱼卵生存的影响,并提出了相应的解决方案。结果表明,由于水力发电导致的低温负面影响,北方铜鱼的产卵期将推迟,鱼卵孵化将面临更高的风险。全球变暖引起的水温升高有望消除这种负面影响,鱼类的宜居面积有望增加。本研究可为评估气候变化和水电工程运行条件下整个河流生态系统的可持续发展提供参考。

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