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首页> 外文期刊>Physical Review & Research International >Mechanism of Flow in Patchy Gravel and Vegetated Beds
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Mechanism of Flow in Patchy Gravel and Vegetated Beds

机译:斑驳碎石和植物床中的流动机理

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摘要

Velocity and turbulence measurements were performed in an open channel with patchy gravel and vegetated beds in order to further understand the transport processes and flow regimes that exist in open channels. The results of laboratory experiments that describe the mechanisms and transport features of heterogeneous flexible and rigid strip vegetation flow interaction with gravel roughness are presented. The paper examines the shear layers and momentum transport that arise as a result of a particular type of patchy roughness distribution. It is shown that relative to a gravel bed, the vegetated section of the channel generally resembles a free shear layer. The resistance within the vegetation porous layer reduces the velocity and creates a sharp transition across the interface at the top of vegetation; of primary importance is the shear layer at the top of the vegetation which influences and dominates the overall momentum transport. At the boundary between the gravel and vegetated section, the lateral momentum transportis observed to be a maximum. The Sweep motions are more significant near bed while Ejections dominates the flow at the upper region of the flow.
机译:速度和湍流测量是在一条开放的通道中进行的,该通道具有不规则的砾石和植物床,以便进一步了解存在于开放通道中的运输过程和流动状态。介绍了实验室实验的结果,这些实验描述了具有砾石粗糙度的非均质柔性和刚性条状植被流动相互作用的机理和传输特征。本文研究了由于特定类型的斑片状粗糙度分布而产生的剪切层和动量传递。结果表明,相对于砾石床,河道的植被部分通常类似于自由剪切层。植被多孔层内的阻力降低了速度,并在植被顶部的界面上形成了陡峭的过渡。最重要的是植被顶部的剪切层,它影响并支配了整个动量传递。在砾石和植被区之间的边界处,观察到的横向动量传递最大。扫动运动在床层附近更为显着,而射流则在流的上部区域占主导地位。

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