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Response of Velocity and Turbulence to Sudden Change of Bed Roughness in Open-Channel Flow

机译:明渠水流速度和湍流对床面粗糙度突变的响应

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The experimental study shows how an open-channel flow would respond to a sudden change (from smooth to rough) in bed roughness. Using a two-dimensional acoustic Doppler velocimeter and a laser Doppler velocimeter, the velocity, turbulent intensities, and Reynolds stress profiles at different locations along a laboratory flume were measured. Additionally, the water surface profile was also measured using a capacitance-type wave height meter. The experimental data show the formation of an internal boundary layer as a result of the step change in bed roughness. The data show that this boundary layer grows much more rapidly than that formed in close-conduit flows. The results also show that the equivalent bed roughness, bed-shear stress, turbulent intensities, and Reynolds stress change gradually over a transitional region, although the bed roughness changes abruptly. The behavior is different from that observed in close-conduit flows, where an overshooting property―which describes the ability of the bed-shear stress to attain a high-peak value over the section with the larger roughness, was reported. A possible reason for the difference is the variation of the water surface profile when an open-channel flow is subjected to a sudden change in bed roughness.
机译:实验研究表明明渠流如何响应床层粗糙度的突然变化(从光滑到粗糙)。使用二维声学多普勒测速仪和激光多普勒测速仪,测量了沿实验室水槽不同位置的速度,湍流强度和雷诺应力分布。另外,还使用电容型波高计测量了水表面轮廓。实验数据表明,由于床层粗糙度的阶跃变化,形成了内部边界层。数据表明,该边界层的增长比封闭管道中的增长快得多。结果还表明,尽管床的粗糙度突然变化,但当量的床粗糙度,床剪切应力,湍流强度和雷诺应力在过渡区域逐渐变化。该行为不同于在密闭管道中观察到的行为,在该行为中,有一个过冲特性,该特性描述了床剪切应力在具有较大粗糙度的截面上达到高峰值的能力。造成这种差异的可能原因是,当明渠水流床的粗糙度突然变化时,水表面轮廓会发生变化。

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