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An open channel with an emergent vegetation patch: Predicting the longitudinal profiles of velocities based on exponential decay

机译:具有紧急植被补丁的开放通道:预测基于指数衰减的速度纵向谱

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摘要

In an open channel, a vegetation patch increases local flow resistances, which impacts velocity fields inside and outside the patch. A series of experiments was performed to investigate the longitudinal evolution of velocities in a channel with an emergent vegetation patch. Near the upstream edge of a patch, lateral flow adjustments led to decreased velocity inside the patch and increased velocity in the adjacent bare channel. A model based on exponential decay was proposed to predict the longitudinal profiles of streamwise velocities upstream of and inside a patch and in the bare channel. The longitudinal transect across a patch was divided into two regions. In each region, the e-fold decay parameter was determined. Fourteen groups of velocity data from cases of model and natural rice patches were used to verify the proposed model. The predicted velocity profiles agreed well with the measurements in both the vegetated region and the bare channel, indicating that the proposed model is capable of predicting the longitudinal profiles of velocities inside and outside a patch.
机译:在一个开放的通道中,植被贴片增加了局部流动阻力,这会影响贴片内外的速度场。进行一系列实验以研究具有突出植被贴剂的通道中的速度的纵向演变。靠近贴片的上游边缘,横向流动调节导致贴片内的速度降低,并且相邻的裸通道中的速度增加。提出了一种基于指数衰减的模型,以预测贴片和裸声中的下游和内部的流速速度的纵向轮廓。贴片的纵向横跨曲线分为两个区域。在每个区域中,确定E-折衰减参数。来自模型和天然水稻斑块的十四组速度数据用于验证所提出的模型。预测的速度曲线与植被区域和裸通道中的测量相同,表明所提出的模型能够预测贴片内外速度的纵向谱。

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