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Numerical studies and proposal of design equations on cylindrical oscillating wave surge converters under regular waves using SPH

机译:使用SPH的规则波作用下圆柱振荡浪涌变换器的数值研究与设计方程的建议。

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An oscillating wave surge converter extracts energy from sea waves and converts it into electricity. Its main components are a flap, hinge, base, and power take-off system. In this paper, an oscillating wave surge converter comprising a cylindrical flap, made up of several cylinders, is numerically investigated under regular waves using the smoothed particle hydrodynamics method. A comparison between cylindrical and box-type rectangular flaps is performed firstly, in which the former extracts more energy and is more suitable in bearing water pressures than the latter. Subsequently, the effects of five parameters (load conditions, total flap mass, hinge height from the seabed, damping of the power take-off system, and the flap thickness) are systematically examined. To investigate the effects of motion resonance, the natural periods of the structures are also studied. Meanwhile, correlation, partial correlation, and linear regression analysis are conducted to obtain a detailed understanding of the effects of the parameters. The details about how to apply the conclusions to full scale model or even real sea states are discussed also. Numerical results show that the heavier and thinner the flap, or the higher the hinge, the better the wave-absorption performance will be. As the damping increases, the extracted energy increases initially and then decreases. Wave conditions contribute the most to wave absorption and are the key parameter in the designs of the converters, followed by hinge height, damping, thickness, and mass of the flap. Motion-resonance also benefits the wave-absorptions. The proposed equations in the linear regression analysis all show high statistical significance level, which can be regarded as reference when designing this kind of converters, accelerating the design process.
机译:振荡波浪涌转换器从海浪中提取能量并将其转换为电能。它的主要组件是襟翼,铰链,底座和取力系统。在本文中,使用平滑粒子流体动力学方法对包含多个圆柱体的圆柱状襟翼的振荡波浪涌转换器进行了数值研究。首先进行圆柱形和箱形矩形阀瓣的比较,其中前者比后者提取更多的能量,更适合承受水压。随后,系统地检查了五个参数(载荷条件,襟翼总质量,距海床的铰链高度,取力系统的阻尼以及襟翼厚度)的影响。为了研究运动共振的影响,还研究了结构的自然周期。同时,进行相关,偏相关和线性回归分析以获得对参数效果的详细了解。还讨论了有关如何将结论应用于完整比例模型甚至真实海况的细节。数值结果表明,襟翼越重,越薄,或者铰链越高,其吸波性能就越好。随着阻尼的增加,提取的能量先增加,然后减少。波浪条件是波浪吸收的最大因素,并且是转换器设计中的关键参数,其次是铰链的高度,阻尼,厚度和襟翼的质量。运动共振也有利于波吸收。线性回归分析中提出的方程均显示出较高的统计显着性水平,可以在设计此类转换器时作为参考,从而加快了设计过程。

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