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规则波作用下开孔圆盘阵列绕射效应研究 被引量:1
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作者 王广原 王多银 +1 位作者 房皓 于法军 《工程力学》 EI CSCD 北大核心 2023年第5期236-244,共9页
在势流理论和线性波理论的假设下,运用特征函数展开法和贝塞尔函数加法理论,研究了规则波作用下开孔圆盘阵列的绕射效应。阵列中每个圆盘都是刚性、开孔的,固定在静水面以下,其厚度相对于入射波波长可以忽略,且通过其表面的流体运动满... 在势流理论和线性波理论的假设下,运用特征函数展开法和贝塞尔函数加法理论,研究了规则波作用下开孔圆盘阵列的绕射效应。阵列中每个圆盘都是刚性、开孔的,固定在静水面以下,其厚度相对于入射波波长可以忽略,且通过其表面的流体运动满足达西定律。根据推导出的速度势,进一步得到圆盘的垂荡力和流场的自由表面高程解析表达式。利用该解析解与已发表的孤立圆盘计算结果进行验证;分析了四盘阵列在各种波浪和结构参数下的绕射现象。研究表明:当圆盘开孔率、吃水深度及入射波波长在一定范围内时,圆盘阵列内部将发生显著的相互作用现象,主要表现为迎浪侧圆盘对背浪侧圆盘的遮蔽效应。在特定的入射波波数下,选择适当的四盘阵列圆盘间距,最大可将背浪侧圆盘垂荡力降低至迎浪侧圆盘的76%。同时还发现,四盘阵列中,迎浪侧圆盘上可能发生波能聚焦现象,引起自由表面高程的急剧增大,但这种波能聚焦现象会随着圆盘开孔率的增大而逐渐减弱。 展开更多
关键词 开孔圆盘 线性波浪 波浪绕射 垂荡力 自由表面高程
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A novel tuned heave plate system for heave motion suppression and energy harvesting on semi-submersible platforms 被引量:1
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作者 LIU Kun OU Jin Ping 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第6期897-912,共16页
Deepwater offshore structures such as semi-submersible platforms suffer powerful ocean waves due to their location and site condition. The long distance away from the shore also brings many difficulties to energy supp... Deepwater offshore structures such as semi-submersible platforms suffer powerful ocean waves due to their location and site condition. The long distance away from the shore also brings many difficulties to energy supply for the platform operation. How to reduce the response of the platform and convert the wave energy into electrical power is a meaningful topic. In this paper, a tuned heave plate system(THP) is presented and designed to be employed on a semi-submersible platform for heave motion suppression and energy harvesting. This THP system is composed of spring supports, a power take-off system(PTO), and a heave plate. The PTO system is a permanent magnet linear generator(PMLG), which could directly convert the kinetic energy of the heave plate into electronic power. The stiffness of the spring supports is designed based on the principle of the tuned mass damper(TMD). The numerical model of the platform and the THP system is established according to the hydrodynamic analysis results of the platform. The model is tested and modified by scale model tests on the platform in the wave tank. A parameter study, including the size, tuned period, and damping ratio of the THP system, is conducted systematically based on the numerical model. The optimal parameters of the THP are selected due to the maximum heave motion reduction under severe wave conditions in South China Sea. The performance of the semi-submersible with and without the THP system under different wave conditions is analyzed. It is demonstrated that this novel tuned heave plate system could reduce the heave motion of the semi-submersible platform significantly and generate considerable power, which makes the THP system have a broad prospect for development. 展开更多
关键词 heave motion SEMI-SUBMERSIBLE wave energy harvesting wave energy converter TMD
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