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Laboratory Measurements of Flow and Turbulence in Discontinuous Distributions of Ligulate Seagrass

机译:齿状海草不连续分布的流动和湍流的实验室测量

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Turbulent flow characteristics were investigated in laboratory flume studies of a ligulate plant canopy interrupted by a gap representing discontinuities observed in seagrass prairies. The reliability of velocity measurements obtained using an acoustic Doppler velocimeter within the canopy was shown using specifically designed experiments. In relatively fast flow (mean velocity 5.5 cm s~(-1)), the mean flow profile was logarithmic above the canopy, had an inflection point near its top, and uniformly low values within it. Within the gap, a recirculation cell formed. Reynolds stress maxima were approximately coincident with the mean flow inflection point. Quadrant analysis revealed an ejection-dominated upper layer, a sweep-dominated region around the top of the canopy and within the gap, and no dominant quadrant within the canopy. In slower flow (mean velocity 1.7 cm s~(-1)) the plants were quasiemergent and the flow fields more uniform. Sweeps similarly dominated the region near the top of the canopy and within the gap. In both flows, autocorrelation of longitudinal velocity fluctuations showed a Lagrangian time scale maximum at the downstream end of the gap.
机译:在实验室水槽研究中,对一串齿状植物冠层的湍流特征进行了研究,该冠层被一个间隙所打断,代表在海草大草原中观察到的不连续性。使用专门设计的实验显示了使用冠层内部的多普勒测速仪获得的速度测量结果的可靠性。在相对较快的流量中(平均速度5.5 cm s〜(-1)),平均流量剖面在顶篷上方是对数的,拐点在顶部附近,并且在其内部均匀较低。在间隙内,形成了一个再循环室。雷诺应力最大值与平均流量拐点近似一致。象限分析显示了一个以喷射为主的上层,在冠层顶部周围和间隙内的一个扫描主导区域,在冠层内没有显性象限。在较慢的水流中(平均速度为1.7 cm s〜(-1)),植物处于准趋近状态,流场更加均匀。类似地,扫掠在树冠顶部附近和间隙内的区域中占主导地位。在两种流动中,纵向速度波动的自相关在间隙的下游端显示拉格朗日时间标度最大值。

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