Impacts of emergent rigid vegetation patches on flow characteristics of open channels

Hunan Qiu, Peng Li, Wen Wang, Peng Shi, Jiao Zhang, Hao Chen
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Abstract

This study examines the influence of emergent vegetation on flow dynamics in natural river systems using large eddy simulation. It specifically addresses alterations in flow velocity and turbulence characteristics within open channels with varying densities of vegetation. The findings reveal a marked reduction in flow velocity within vegetated areas due to the obstruction posed by vegetation and the dynamics of shear layers. The flow alteration manifests in two distinct phases: the formation of a stable wake region behind densely vegetated patches and a more gradual velocity recovery in areas with sparser vegetation. In non-vegetated downstream zones, flow velocity tends to stabilize over a distance. Regarding turbulence, the study identifies differing patterns: enhanced vortex structures and accelerated energy dissipation in sparsely vegetated areas, contrasted with reduced turbulence in densely vegetated patches. Quadrant analysis further elucidates that ejections and inward interactions are primary contributors to Reynolds stress within vegetation patches, whereas outward interactions and sweeps become dominant in downstream regions. These insights offer a deeper understanding of how aquatic vegetation shapes river hydrodynamics, providing valuable information for effective river management and ecological restoration strategies.
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新兴刚性植被斑块对明渠水流特性的影响
本研究利用大涡流模拟研究了新生植被对自然河流系统水流动力学的影响。研究特别探讨了植被密度不同的明渠内流速和湍流特性的变化。研究结果表明,由于植被的阻挡和剪切层的动态作用,植被覆盖区域内的流速明显下降。水流的改变表现为两个不同的阶段:在植被茂密的区域后形成稳定的尾流区;在植被稀疏的区域,水流速度会逐渐恢复。在无植被的下游区域,流速在一段距离内趋于稳定。在湍流方面,研究发现了不同的模式:植被稀疏区域的涡流结构增强,能量耗散加快,而植被茂密区域的湍流则减弱。象限分析进一步阐明,在植被斑块内,喷射和内向相互作用是造成雷诺应力的主要因素,而在下游区域,外向相互作用和横扫则占主导地位。这些见解加深了人们对水生植被如何影响河流流体力学的理解,为有效的河流管理和生态恢复策略提供了宝贵的信息。
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