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水力发电学报 ›› 2026, Vol. 45 ›› Issue (7): 83-95.doi: 10.11660/slfdxb.20260706

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西江流域水库群调度的不确定性风险动态传递机制

  

  • 出版日期:2026-07-25 发布日期:2026-07-25

Dynamic propagation mechanism of uncertainty risk in operation of cascade reservoirs in Xijiang River basin

  • Online:2026-07-25 Published:2026-07-25

摘要: 针对气候变化背景下径流非一致性加剧的调度风险问题,以西江流域梯级水库群为对象,构建考虑径流不确定性的稳健性优化调度模型,并引入动态贝叶斯网络,建立缺水与出力不足的风险传递模型,对比分析历史调度与稳健性调度情景下的风险演化及传递特征。结果表明:稳健性调度可使流域联合风险概率均值降低47.9%,有效降低下游断面缺水及水库出力不足的风险;水库群风险传递具有时空异质性,空间上长洲-梧州和百色-西津构成主要风险路径,时间上百色与光照水库的时序风险传递最为突出;上游风险与水库历史状态存在协同放大效应,且年调节水库更为敏感。研究成果为流域水资源系统风险防控与适应性调度提供了理论和实践基础。

关键词: 水库群调度, 稳健性决策, 动态贝叶斯网络, 风险传递

Abstract: This study constructs a robust optimization operation model of cascade reservoirs to address the scheduling risks intensified by the non-stationarity of river runoffs under climate change, and applies it in a case study of the Xijiang River basin. Adopting the dynamic Bayesian network (DBN) method, we develop a dynamic probabilistic model for the risk propagation related to water shortage and the insufficient power output in the cascade reservoir system. A comparative analysis is made on the evolution and propagation characteristics of uncertainty risks under our new robust operation rules against those historical operation rules. The results indicate the robust rules lower the mean joint risk probability across the entire basin by 47.9%, effectively mitigating the water shortage risks in the downstream river sections and the insufficient power output of the reservoir system. Risk propagation in the system features significant spatiotemporal heterogeneity. Spatially, the primary risk pathways go through the river sections of Changzhou-Wuzhou and Baise-Xijin; Temporally, the most prominent sequential risk propagation is that between the Baise and Guangzhao reservoirs. We demonstrate a synergistic amplification effect under the upstream risks and the reservoirs’ own historical risk states, which is more sensitive in the case of annual regulation reservoirs. Our findings would help the prevention and control of uncertainty risks and the adaptive operation of cascade reservoir systems.

Key words: cascading reservoir operation, robust decision, dynamic Bayesian network, risk propagation

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