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Wave forces on an Oscillating Water Column Device

机译:摆动水柱装置上的波力

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The Oscillating Water Column (OWC) is one of the wave energy device working on the principle of rise and fall of free surface water oscillation due to continuous impingement of waves that penetrates into a semi submerged chamber. It is one of the successful device that has been proved up to pilot stage in the field. There have been many studies on optimizing various parameters of the OWC device through laboratory modeling. In order to quantify the horizontal and vertical wave forces on a 1:12 OWC model, a series of experiments has been conducted in a wave flume, 72.5 m long, 2 m wide and 2.5 m deep. The chamber with dimensions of 1910 mm wide (w) (parallel to the wave crest) and 300 mm length (b) (along the wave direction) was made of 20 mm thick acrylic sheet. The total height of the chamber is 900 mm and the water depth (d) in front of the chamber is 500 mm. The bottom opening (o) in the front lip wall is 300 mm. An air vent of 0.68 % of the plan area of the device was maintained. Custom made strain gauge based force transducer has been mounted to measure two force components namely vertical and horizontal. The test set-up was located at a distance of 45 m from the wave maker. The strain gauges in the load cell were placed in such a manner to nullify the effect due to moment in the measurement. The experiments were conducted for regular waves with the wave characteristics defined by Froude model scale law. The wave frequencies range between 0.42 Hz and 1.25 Hz with the wave steepness, H/L in the range of 0.0107 to 0.0524 and relative water depth, d/L in the range of 0.09 to 0.30 have been considered in the present study. It is observed that at natural frequency of system, the force on the structure is less due to high-energy absorption by the OWC.
机译:振荡水柱(OWC)是对自由表面水振荡的原理工作的波能装置之一,由于渗透到半浸没室中的波线的连续冲击。它是已成功的设备之一,已被证明在该领域的试验阶段。通过实验室建模优化OWC设备的各种参数存在许多研究。为了在1:12 OWC模型上量化水平和垂直波力,一系列实验已经在波水槽中进行,72.5米长,2米宽,深度2.5米。宽度为1910毫米(W)(与波峰嵴)和300mm长度(B)(沿波方向)的腔室由20mm厚的丙烯酸片制成。腔室的总高度为900mm,腔室前面的水深(d)为500mm。前唇墙中的底部开口(O)为300mm。维持装置的0.68%的空气通风口。定制的基于应变规装的力传感器已经安装以测量两个力量,即垂直和水平。测试设置位于波浪制造商的45米处。载体中的应变计以这种方式放置,以使由于测量中的时刻来排出效果。通过FRoude模型规模法定义的波形特征进行实验。波频范围在0.0107至0.0524的波陡中,H / L在0.0107至0.0524的范围内,在本研究中考虑了0.09至0.30的相对水深。观察到,在系统的固有频率下,由于OWC的高能量吸收,结构上的力较少。

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