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Estimation of Water Column Surface Displacement of a Fixed Oscillating Water Column by Simple Mechanical Model with Determination of Hydrodynamic Parameters via Physical Experimental Model

机译:简单机械模型估计固定振荡水柱的水柱表面位移与物理实验模型测定流体动力学参数

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摘要

For the first time, hydrodynamic parameters such as damping coefficient, added mass, and the natural and resonant frequency of a bottom-fixed oscillating water column (OWC) are determined for various underwater chamber openings and orifice sizes by performing physical experimental free decay tests and utilizing logarithmic decrement method. The damping coefficient of the system is found to be exponentially and linearly decaying as the orifice size increases and underwater opening decreases, respectively. The determined damping coefficient also includes the viscous losses under the front wall opening of the OWC system. The water column within the chamber is modeled as a single degree of freedom (SDOF) mechanical system, and obtained damping and added mass values are substituted into the model. The surface water column displacements are determined by both solving the developed model and performing physical experiments under the generated monochromatic incident waves. A remarkable agreement is found between the analytical model results and the physical experimental data when the water column surface acted approximately as a rigid body. However, when a significant amount of sloshing occurs in the chamber, model results diverged from the experimental values. It was observed that relatively high power take-off (PTO) damping and small chamber openings substantially restrain the sloshing motion otherwise inherently generated in the chamber. In addition, for all openings and orifice sizes used in this study, the determined resonant frequencies of the OWC matched well with those obtained from the experimental data.
机译:首次,通过执行物理实验自由衰减测试和孔尺寸,确定诸如阻尼系数,增加的质量,增加的质量和底部固定振荡水柱(OWC)的自然和谐振频率的流体动力学参数和底部固定振荡水柱(OWC)的谐振频率利用对数减量方法。当孔尺寸增加和水下开口减小时,发现系统的阻尼系数是指数和线性的衰减。所确定的阻尼系数还包括OWC系统的前壁开口下的粘性损耗。腔室内的水柱被建模为单一的自由度(SDOF)机械系统,并且获得的阻尼和添加质量值被取代成模型。表面水柱位移通过求解开发的模型并在所产生的单色入射波下进行物理实验来确定。当水柱表面致作刚体时,分析模型结果和物理实验数据之间存在显着的协议。然而,当腔室发生大量的晃动时,模型结果与实验值不同。观察到相对高的功率起飞(PTO)阻尼和小室开口基本上抑制腔室中固有地产生的晃动运动。此外,对于本研究中使用的所有开口和孔口尺寸,OWC的确定的谐振频率与从实验数据中获得的那些匹配良好。

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