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Applying a New Force–Velocity Synchronizing Algorithm to Derive Drag Coefficients of Rigid Vegetation in Oscillatory Flows

机译:应用新的力速度同步算法在振荡流动中导出刚性植被的阻力系数

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摘要

Coastal vegetation is effective in dissipating incident wave energy during storm conditions, which offers valuable protection to coastal communities. Determining vegetation drag coefficient (CD) is of great importance to the quantification of vegetation-induced wave dissipation. Recently, a direct measuring approach has been developed to derive vegetation drag coefficient more accurately compared to the conventional calibration approach. However, as this approach requires perfectly in-phase force and velocity signals, there are two difficulties associated with it. The first difficulty is the availability of a suitable force sensor to compose synchronized force–velocity measuring systems. The second difficulty is related to realigning the obtained timeseries of force and velocity data. This technical note develops a new synchronized force–velocity measuring system by using standard force sensors and an acoustic doppler velocimeter (ADV). This system is applied together with an automatic realignment algorithm to ensure in-phase data for CD deviation. The algorithm reduces the phase shift between force–velocity signals from ca. 0.26 s to 0.003 s. Both time-varying and period-averaged CD can be obtained using this method. The derived CD can be used to accurately reproduce the measured maximum total acting force on vegetation (R2 = 0.759), which shows the reliability of the automatic alignment algorithm. The newly-developed synchronized force–velocity measuring system and alignment algorithm are expected to be useful in future experiments on vegetation–wave interactions with various hydrodynamic and vegetation settings.
机译:沿海植被有效地在风暴条件下消散了事故波能量,为沿海社区提供了宝贵的保护。确定植被拖动系数(CD)对植被引起的波散测量非常重要。最近,与传统的校准方法相比,已经开发了一种直接测量方法来更准确地衍生植被阻力系数。然而,由于这种方法需要完全相同的力和速度信号,因此有两个困难与之相关。第一难点是合适的力传感器的可用性,以构成同步力 - 速度测量系统。第二个难度与重新调整所获得的力和速度数据的阶段有关。该技术说明通过使用标准力传感器和声学多普勒速度计(ADV)开发了新的同步力 - 速度测量系统。该系统与自动重新调节算法一起应用,以确保CD偏差的相位数据。该算法降低了来自CA的力速度信号之间的相移。 0.26秒至0.003秒。可以使用该方法获得时变和周期平均的CD。衍生的CD可用于精确地再现植被上测量的最大总作力(R2 = 0.759),其表示自动对准算法的可靠性。新开发的同步力 - 速度测量系统和对准算法预计将在未来的植被波相互作用与各种流体动力学和植被环境的实验中有用。

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