Guo Lihao, Li Guodong, Zhang Qiaoling, Zhang Guoyong, Wang Weiying, Liu Zijun, Li Shanshan
State Key Laboratory of Eco-Hydraulics in Northwest Arid Region of China, School of Water Resources and Hydropower Xi'an University of Technology Xi'an China.
China Renewable Energy Engineering Institute Beijing China.
Ecol Evol. 2024 Aug 22;14(8):e70202. doi: 10.1002/ece3.70202. eCollection 2024 Aug.
The development of hydroelectric projects has adversely affected the reproductive activities of downstream fish species. To facilitate the natural reproduction of fish and restore spawning grounds post-dam construction, it is imperative to explore the ecological factors crucial for their reproduction. Currently, various research methods with different advantages and limitations are employed for this purpose. Using identified spawning locations and periods as clues, we quantitatively investigate the flow velocity, water depth, water temperature, and riverbed substrate required for spawning. The results are validated using habitat simulation methods, aiming to establish a more scientific approach to explore ecological factors affecting fish reproduction. This study provides a more scientific, systematic, and detailed report on the ecological factors required for the spawning of : flow velocity ranging from 0.19 to 0.97 m/s, water depth from 0.28 to 1.12 m, water temperature between 11.4 and 15.2°C, and predominantly gravel substrate. The reliability of the results was verified in another spawning ground, with good verification results. This research provides crucial data for the bio-mimetic reproductive technology of and the restoration of spawning grounds for natural fish reproduction post-dam construction. It addresses the lack of suitable ecological factor data for protective fish species in the upper reaches of the Yellow River. The method exhibits strong scientific, accurate, and implementable characteristics.
水电项目的开发对下游鱼类物种的繁殖活动产生了不利影响。为促进鱼类自然繁殖并在大坝建设后恢复产卵场,探索对其繁殖至关重要的生态因素势在必行。目前,为此目的采用了各种具有不同优缺点的研究方法。以确定的产卵地点和时期为线索,我们定量研究了产卵所需的流速、水深、水温及河床底质。使用栖息地模拟方法对结果进行验证,旨在建立一种更科学的方法来探索影响鱼类繁殖的生态因素。本研究提供了一份关于产卵所需生态因素的更科学、系统和详细的报告:流速范围为0.19至0.97米/秒,水深为0.28至1.12米,水温在11.4至15.2°C之间,且主要为砾石底质。在另一个产卵场验证了结果的可靠性,验证结果良好。本研究为黄河上游保护鱼类物种的仿生繁殖技术及大坝建设后恢复自然鱼类繁殖的产卵场提供了关键数据。它解决了黄河上游保护鱼类物种缺乏合适生态因素数据这一问题。该方法具有很强的科学性、准确性和可操作性。