溪洛渡−向家坝梯级水库生态调度对长江上游江津江段四大家鱼繁殖的影响

ECOLOGICAL SCHEDULING OF XILUODU- XIANGJIABA CASCADE RESERVOIRS ON THE REPRODUCTION OF THE FOUR MAJOR CHINESE CARPS IN THE JIANGJIN SECTION OF THE UPPER YANGTZE RIVER

  • 摘要: 为减缓水电站运行对坝下河流鱼类繁殖的不利影响、充分发挥水库的生态效益, 自2017年起开展了溪洛渡−向家坝联合生态调度。研究基于2017—2022年长江上游江津江段早期资源调查数据, 评估梯级水库联合生态调度对坝下江段四大家鱼自然繁殖效果, 并识别影响四大家鱼自然繁殖的关键水文指标。结果表明, 2017—2022年江津江段四大家鱼鱼卵径流总量为0.42—4.01亿粒, 总体呈波动变化趋势, 其中2022年最高(约4.01亿粒); 6年间共观察到25次产卵高峰期, 主要集中在6月上旬至7月上旬。生态调度期间, 四大家鱼鱼卵径流量为0.001—1.088亿粒, 占当年总卵径流量的0.06%—34.47%, 其中2022年超过30%, 2018年超过10%。从生态调度效果来看, 与生态调度相吻合的繁殖高峰期占总繁殖高峰期的16%, 表明生态调度有效促进了坝下江津江段四大家鱼自然繁殖活动。水文需求分析结果表明, 江津江段适宜四大家鱼产卵流量为6000—15000 m3/s, 适宜水温为21—23℃。产卵量与水文指标相关性分析显示, 四大家鱼产卵量与洪峰流量、流量涨幅及流量增长率具有显著正相关(P<0.05)。根据四大家鱼早期资源调查结果, 建议在5月中下旬及6月上旬开展2—3次生态调度, 并保持江津江段涨水持续时间维持3d以上且流量日增长率维持在900 m3/s以上, 有利于促进江津江段四大家鱼大规模繁殖。研究成果可为金沙江梯级水库调度方案制定提供科学依据。

     

    Abstract: To mitigate the negative effects of hydropower operation on fish reproduction in the downstream river and maximize reservoir ecological benefits, the Xiluodu-Xiangjiaba joint ecological scheduling has been implemented since 2017. Based on early resource survey data from the Jiangjin section of the upper Yangtze River from 2017 to 2022, this study evaluates the effects of cascade reservoir joint ecological scheduling on the natural spawning of the four major Chinese carps in the downstream river section and identifies key hydrological indicators that affect the natural spawning of the four major Chinese carps. The results showed that the total egg production of four major Chinese carps in the Jiangjin section ranged from 42 to 401 million from 2017 to 2022, exhibiting a general fluctuating trend with a peak of approximately 401 million in 2022. Over the six-year period, 25 spawning peaks were observed, mainly concentrated from early June to early July. During ecological scheduling periods, the egg runoff volumes ranged from 0.001 to 108.8 million, accounting for 0.06% to 34.47% of annual totals—exceeding 30% in 2022 and 10% in 2018. In terms of ecological scheduling effectiveness, the breeding peak period that coincided with ecological scheduling accounted for 16% of the total breeding peak period, indicating that ecological scheduling effectively promoted the natural breeding activities in the downstream Jiangjin section. Hydrological demand analysis showed that the suitable flow range for spawning of the four major Chinese carps in the Jiangjin section was 6000—15000 m3/s, with a suitable water temperature of 21—23℃. Correlation analysis further demonstrated that spawning amount had a significant positive correlation with the peak flow, flow increment, and flow increase rate (P<0.05). Based on these results, the study recommends conducting 2—3 ecological scheduling events in mid-late May and early June, maintaining rising water conditions in the Jiangjin section for more than 3d, and ensuring a daily fiow increase rate of at least 900 m3/s to facilitate the large-scale reproduction. The results provide a scientific basis for formulating scheduling strategies for the Jinsha River cascade reservoir system.

     

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