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      汉江中下游水华现状及防控对策研究

      Current status and prevention strategies of algal blooms in middle and lower reaches of Hanjiang River

      • 摘要: 汉江是长江最大的支流,也是沿线多个城市的重要饮用水源地,承担着供水、灌溉、航运等重要功能。然而2010年以来,汉江中下游已累计发生10余次大规模水华事件,藻类暴发频次显著增加,严重威胁区域供水安全和生态系统稳定。全面总结了汉江中下游水华的演变规律,从营养盐、气象、水动力条件等方面系统分析了水华形成的驱动机制,提出了“监测-预警-调控-治理”全链条水华防控体系,包括构建天空地一体化智能监测网络实现水华动态跟踪,融合机理模型与智能算法提升预报预警精度,通过水文水动力阈值调控优化工程调度策略以抑制藻类增殖,以及协同流域营养盐管控与引调水工程联合调度建立长效治理机制。研究成果可为河流水华防控提供理论支持,有助于增强汉江中下游水生态与供水安全的保障能力。

         

        Abstract: Hanjiang River as the largest tributary of Changjiang River, serves as a critical drinking water source for numerous urban areas along its basin, supporting key functions including water supply, agricultural irrigation, and navigation.Since 2010, however, over ten large-scale algal bloom events have been documented in the middle and lower reaches of Hanjiang River, with a marked increase in the frequency of algal proliferation, posing substantial threats to regional drinking water safety and aquatic ecosystem stability.This study comprehensively reviewed the temporal and spatial evolution of algal blooms in this region and systematically examined the driving mechanisms underlying bloom formation, focusing on nutrients, meteorological conditions, and hydrodynamic factors.Furthermore, we proposed an integrated prevention and control framework structured around monitoring-early warning-regulation-governance.This system incorporated the establishment of an intelligent monitoring network integrating satellite, aerial, and ground-based platforms to achieve dynamic tracking of algal blooms, the improvement of prediction accuracy and early warning capability through coupled mechanism-based model and data-driven algorithms, the optimization of hydro-project operation strategies based on hydrodynamic thresholds to suppress algal growth, and the development of long-term management mechanisms combining watershed nutrient control and coordinated water diversion projects.The findings can provide a theoretical foundation for algal bloom mitigation in river systems and contribute to enhancing the ecological security and sustainable water supply capacity of the Hanjiang River Basin.

         

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