黄河调水调沙对河口及邻近海域悬沙浓度和浮游生态系统影响的数值模拟
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X145

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中国海油海洋环境与生态保护公益基金会项目(CF-MEEC/2025-7)


Numerical simulation of the effects of water and sediment regulation in the Yellow River on suspended sediment concentration and plankton ecosystem in the estuary and adjacent waters
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    摘要:

    为了研究2021年调水调沙期间黄河口水沙分布及生态环境变化,探讨调水调沙对黄河口地区水动力和生态环境的影响机制。本文基于非结构网格有限体积海洋模型(Finite volume community ocean model,FVCOM)建立渤海三维水动力模型和生态模型,并结合遥感资料,分析调水调沙期间黄河口冲淡水、悬浮泥沙、营养盐及叶绿素a质量浓度的时空变化特征。结果表明,调水调沙显著改变了黄河口冲淡水和悬浮泥沙的分布与扩散特征。调水调沙期间,黄河口海域悬浮泥沙和营养盐浓度明显增加,悬浮泥沙扩散范围在排沙期和排水期基本一致,但因入海径流量减少,排沙期扩散范围有所限制。陆源物质主要集中在河口南北两侧,南侧扩散范围大于北侧。同时,调水调沙期间氮磷比增大,营养盐输入促进浮游植物生长,导致叶绿素a质量浓度显著升高。然而,悬浮泥沙浓度上升引发光限制效应,部分抵消了营养盐增加对初级生产的促进作用。研究表明,将排沙期设置在调水期之后,对降低光限制效应和抑制有害藻华具有重要作用。本研究为优化黄河口调水调沙方案、有效防控藻华及维护生态环境提供了科学依据。

    Abstract:

    To study the water-sediment distribution and ecological environment changes in the Yellow River Estuary during the 2021 water and sediment regulation period, and to explore the impact mechanisms of water and sediment regulation on the hydrodynamics and ecological environment in the estuarine area, this paper is based on the Finite Volume Community Ocean Model (FVCOM). A three-dimensional hydrodynamic and ecological model for the Bohai Sea was established, and remote sensing data were used to analyze the spatiotemporal variations of freshwater from the Yellow River, suspended sediment, nutrients, and chlorophyll-a concentration during the water and sediment regulation period. The results show that water and sediment regulation significantly altered the distribution and diffusion characteristics of freshwater and suspended sediment in the Yellow River Estuary. During the regulation period, the concentration of suspended sediment and nutrients in the estuarine area increased significantly, and the diffusion range of suspended sediment remained similar during both the sediment discharge and water discharge periods. However, due to the reduced river inflow, the diffusion range was somewhat limited during the sediment discharge period. Land-based substances were mainly concentrated on the southern and northern sides of the estuary, with the southern side having a wider diffusion range than the northern side. Meanwhile, during the water and sediment regulation period, the nitrogen-to-phosphorus ratio increased, and the input of nutrients promoted phytoplankton growth, leading to a significant increase in chlorophyll-a concentration. However, the increase in suspended sediment concentration caused light limitation, which partly offset the positive effect of increased nutrients on primary production. The study suggests that setting the sediment discharge period after the water diversion period is crucial for reducing light limitation and preventing harmful algal blooms. This research provides scientific guidance for optimizing the water and sediment regulation plan in the Yellow River Estuary, effectively controlling algal blooms, and maintaining the ecological environment.

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徐泽宇,钟威,刘建时,林军.黄河调水调沙对河口及邻近海域悬沙浓度和浮游生态系统影响的数值模拟[J].上海海洋大学学报,2025,34(6):1368-1385.
XU Zeyu, ZHONG Wei, LIU Jianshi, LIN Jun. Numerical simulation of the effects of water and sediment regulation in the Yellow River on suspended sediment concentration and plankton ecosystem in the estuary and adjacent waters[J]. Journal of Shanghai Ocean University,2025,34(6):1368-1385.

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  • 收稿日期:2024-10-30
  • 最后修改日期:2025-04-09
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  • 在线发布日期: 2025-12-06
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