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Experimental study of a positive surge. Part 1: basic flow patterns and wave attenuation

机译:正激增的实验研究。第1部分:基本流型和波衰减

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A positive surge results from a sudden change in flow that increases the depth. It is the unsteady flow analogy of the stationary hydraulic jump and a geophysical application is the tidal bore. Positive surges are commonly studied using the method of characteristics and the Saint-Venant equations. The article presents the results from new experimental investigations conducted in a large rectangular channel. Detailed unsteady velocity measurements were performed with a high temporal resolution using acoustic Doppler velocimetry and non-intrusive free-surface measurement devices. Several experiments were conducted with the same initial discharge (Q = 0.060 m3/s) and six different gate openings after closure resulting in both non-breaking undular and breaking bores. The analysis of undular surges revealed wave amplitude attenuation with increasing distance of surge propagation were in agreement with Ippen and Kulin theory. Also, undular wave period and wave length data were relatively close to the values predicted by the wave dispersion theory for gravity waves in intermediate water depths.
机译:流量的突然变化会导致深度增加,从而产生正的波动。它是固定水力跃迁的非稳态流动类比,潮汐钻孔是地球物理应用的一部分。通常使用特征方法和Saint-Venant方程研究正电涌。本文介绍了在大型矩形通道中进行的新实验研究的结果。使用声学多普勒测速仪和非侵入式自由表面测量设备,可以在较高的时间分辨率下进行详细的非稳态速度测量。在相同的初始排放量(Q = 0.060 m3 / s)和关闭后六个不同的闸门开度下进行了多次实验,从而形成了不破裂的波浪形和破裂孔。对波浪状浪涌的分析表明,随着浪涌传播距离的增加,波幅衰减也与Ippen和Kulin理论一致。同样,波浪状波周期和波长数据相对接近于由波浪色散理论预测的中等水深重力波的值。

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