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Analysis of turbulent flow structures in the straight rectangular open channel with floating vegetated islands

机译:浮动植被岛的直矩形开放通道湍流结构分析

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Floating vegetated islands (FVIs) are extensively implemented in various river ecology restoration projects, given their capability of decontaminating pollutants. The fluid dynamical behaviors of turbulence through FVIs are studied in the flume by using the SonTek Acoustic Doppler Velocimetry. Through conventional spectral and quadrant analyses, flow characteristics, such as energy content and turbulent momentum exchange, are investigated as the flow encountered a series of root canopies. A shear layer with corresponding coherent vortex structures at the bottom of root canopies occurred, which is generated by Kelvin-Helmholtz instabilities. These instabilities are usually derived from velocity differences between root canopy and gap region. Shear- and stem-scale vortices are identified by using spectral analysis. The power spectral density function on measured vertical velocity fluctuations in the flow direction near the bottom of root canopies from the leading edge of FVIs is computed. Given the flow developing downstream, a series of the spectral curves has gradually showed one dominant dimensionless frequency at 0.046. The sweep and ejection events have contributed prominently to the Reynolds stress in whole vertical direction. Momentum flux carried by sweeps outweighs its counterpart carried by ejections inside root canopies. However, the situation is different outside root canopies. The sweep-ejection contributions are brief but crucial to the total turbulent momentum exchange, which is in good agreement with considerable studies on turbulent flow through canopies.
机译:赋予浮动植被岛(FVIS)在各种河流生态修复项目中广泛实施,鉴于其净化污染物的能力。通过使用Sontek声学多普勒速度在水槽中研究了通过FVI的湍流流体动力学行为。通过传统的光谱和象限分析,随着流量遇到一系列根檐篷,调查了诸如能量含量和湍流动量交换的流动特性。发生了根檐底部的具有相应的相干涡流结构的剪切层,由Kelvin-Helmholtz Instabilities产生。这些不稳定性通常来自根冠层和间隙区域之间的速度差异。通过使用光谱分析来识别剪切和茎秆涡流。计算功率谱密度函数在来自FVI的前缘的根檐底部附近的流动方向上的测量垂直速度波动。鉴于下游的流动发展,一系列光谱曲线逐渐显示出一个主导无量纲频率为0.046。扫掠和射血事件在整个垂直方向上占据了雷诺应力的贡献。扫描携带的动量助焊剂超过了根檐内射出的射出的对应物。但是,情况是外部根檐的不同。扫描喷射贡献简短,但对于完全湍流的动量交换是至关重要的,这与通过檐篷的湍流进行了相当大的研究。

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