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Vegetation impacts on near bank flow

机译:植被对近岸流量的影响

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Vegetation is an important component of stream restoration designs used to control streambank retreat, but vegetation effects on near bank flows need to be quantified. The goal of this research was to evaluate how three-dimensional velocity structure and turbulence characteristics vary with three vegetation treatments: tree, shrub and grass. A second order prototype stream (Tom's Creek in Blacksburg, Virginia, USA) with individual reaches dominated by each vegetation treatment was modelled in a research flume using a fixed-bed Froude-scale modelling technique. One model streambank of the prototype stream was constructed for each vegetation type and compared to a bare control (only grain roughness). Velocity profiles perpendicular to the flume model boundary were measured using a three-dimensional acoustic Doppler velocimeter. Three-dimensional velocity records, turbulent kinetic energy characteristics, and Reynolds stresses were analysed. The addition of vegetation on a sloping streambank increased the free stream streamwise velocity as compared to a bare streambank. Velocity in the downstream direction decreased in the area close to the streambank boundary for all vegetation treatments. Tree turbulence intensity and Reynolds stress distributions were similar to the bare condition due to the sparse tree placement characteristic of mature forests. The turbulence caused by the upright shrub treatment increased turbulent kinetic energy and Reynolds stresses near the streambank, particularly at the toe. The flexible grass vegetation folded and protected the streambank. reducing shear stress near the boundary.
机译:植被是用于控制河岸撤退的河流恢复设计的重要组成部分,但植被对近岸水流的影响需要量化。这项研究的目的是评估三维速度结构和湍流特性如何随三种植被处理而变化:树木,灌木和草丛。在研究水槽中,使用固定床Froude规模建模技术对二阶原型流(美国弗吉尼亚州布莱克斯堡的Tom's Creek)进行了建模。针对每种植被类型构建原型流的一个模型流库,并将其与裸露控件(仅谷物粗糙度)进行比较。使用三维声学多普勒测速仪测量垂直于水槽模型边界的速度剖面。分析了三维速度记录,湍动能特征和雷诺应力。与裸露的河岸相比,在倾斜的河岸上增加植被可增加自由河的河道速度。对于所有植被处理,在靠近河岸边界的区域中,下游方向的流速均降低。由于成熟森林的树木稀疏,树木的湍流强度和雷诺应力分布与裸露条件相似。立式灌木处理引起的湍流增加了湍流动能,雷诺应力在河床附近,特别是在脚趾处。柔软的草木植被折叠起来并保护了河岸。减小边界附近的剪应力。

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