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Velocity Profile and Turbulence Structure Measurement Corrections for Sediment Transport-Induced Water-Worked Bed

机译:沉积物传输诱导的水性工作床的速度曲线和湍流结构测量校正

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摘要

When using point measurement for environmental or sediment laden flows, there is well-recognised risk for not having aligned measurements that causes misinterpretation of the measured velocity data. In reality, these kinds of mismeasurement mainly happen due to the misinterpretation of bed orientation caused by the complexity of its determination in natural flows, especially in bedload laden or rough bed flows. This study proposes a novel bed realignment method to improve the measured data benchmarking by three-dimensional (3D) bed profile orientation and implemented it into different sets of experimental data. More specifically, the effects of realignment on velocity profile and streamwise turbulence structure measurements were investigated. The proposed technique was tested against experimental data collected over a water-worked and an experimentally arranged well-packed beds. Different from the well-packed rough bed, the water-worked bed has been generated after long sediment transport and settling and hence can be used to verify the proposed bed-alignment technique thoroughly. During the flow analysis, the corrected velocity, turbulence intensity and Reynolds stress profiles were compared to the theoretical logarithmic law, exponential law and linear gravity (universal Reynolds stress distribution) profiles, respectively. It has been observed that the proposed method has improved the agreement of the measured velocity and turbulence structure data with their actual theoretical profiles, particularly in the near-bed region (where the ratio of the flow measurement vertical distance to the total water depth, z/h, is limited to ≤0.4).
机译:在使用环境或沉积物的点测量时,有很好的识别风险,不具有导致测量速度数据的误解的测量。实际上,这些形式的不氧气主要是由于自然流动测定的复杂性引起的床取向引起的误解,特别是在床单装载或粗糙的床流动中。本研究提出了一种新型床重新调整方法,以通过三维(3D)床轮廓取向改善测量数据基准,并将其实施到不同的实验数据集中。更具体地,研究了重新调节对速度曲线和流动湍流结构测量的影响。测试技术针对由水工作和实验布置良好的床上收集的实验数据进行测试。不同于良好的粗糙床,在长沉积物运输和沉降后,生产的水工作床已经产生,因此可用于彻底验证所提出的床位技术。在流动分析期间,将校正的速度,湍流强度和雷诺应力分布分别与理论对数法,指数律和线性重力(通用雷诺应力分布)谱进行比较。已经观察到所提出的方法改善了测量的速度和湍流结构数据的同步,其实际的理论谱,特别是在近床区(流量测量垂直距离与总水深的比率,Z / h,限制为≤0.4)。

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