明渠流条件下红树植被对水动力特性的影响

Effects of mangrove vegetation on hydrodynamic characteristics under open-channel flow conditions

  • 摘要: 红树林内水动力过程与泥沙输运及营养物质循环密切相关,认识红树植被周围流动特性对红树林湿地保护与修复具有重要意义。本文开展了单株红树水槽试验对数值模型进行验证,采用OpenFOAM对明渠流条件下红树植被周围三维湍流流动进行数值模拟,探究红树植被对流速和湍动能分布的影响。结果表明:①与单株红树相比,红树斑块对流速分布的影响更显著,可扩大低速区范围并增强流速分布的空间异质性,整体缓流效果提升约131%;②红树斑块可提高整体湍动能水平,促进高湍动能区域在横向和垂向上扩展,其湍动能增强效应比单株红树高约45%;③在单株红树向红树斑块演变过程中,低速区范围和平均湍动能随着植株数量增加而持续增大,但其增幅逐渐减小,呈现非均匀变化趋势。研究成果可为红树林植被配置优化及湿地生态修复工程设计提供指导。

     

    Abstract: Hydrodynamic processes in mangrove forests are closely associated with sediment transport and nutrient cycling. Therefore, understanding the flow characteristics around mangrove vegetation is essential for the conservation and ecological restoration of mangrove wetlands. In this study, three-dimensional turbulent flow around mangrove vegetation under open-channel flow conditions was simulated using OpenFOAM to investigate the effects of mangroves on flow velocity and turbulent kinetic energy distributions. The results are as follows: ① Compared with a single mangrove, a mangrove patch exerts a more pronounced influence on the velocity distribution, expanding the low-velocity zone and enhancing the spatial heterogeneity of the flow field. The overall flow attenuation increases by approximately 131%. ② The mangrove patch significantly increases the turbulent kinetic energy level and promotes the lateral and vertical expansion of high turbulent kinetic energy regions. The overall enhancement is about 45% greater than that induced by a single mangrove. ③ As vegetation configuration transitions from a single mangrove to a mangrove patch, both the extent of the low-velocity zone and the average turbulent kinetic energy increase with the number of trees. However, the rate of increase gradually decreases, exhibiting a non-uniform trend. These findings provide scientific guidance for optimizing vegetation configurations and supporting ecological restoration design in mangrove wetlands.

     

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