Effect of Internal Fluid Resonance on the Performance of a Floating OWC Device

I. Cho
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引用次数: 4

Abstract

In the present study, the performance of a floating oscillating water column (OWC) device has been studied in regular waves. The OWC model has the shape of a hollow cylinder. The linear potential theory is assumed, and a matched eigenfunction expansion method(MEEM) is applied for solving the diffraction and radiation problems. The radiation problem involves the radiation of waves by the heaving motion of a floating OWC device and the oscillating pressure in the air chamber. The characteristics of the exciting forces, hydrodynamic forces, flow rate, air pressure in the chamber, and heave motion response are investigated with various system parameters, such as the inner radius, draft of an OWC, and turbine constant. The efficiency of a floating OWC device is estimated in connection with the extracted wave power and capture width. Specifically, the piston-mode resonance in an internal fluid region plays an important role in the performance of a floating OWC device, along with the heave motion resonance. The developed prediction tool will help determine the various design parameters affecting the performance of a floating OWC device in waves. Received 3 February 2021, revised 15 March 2021, accepted 14 April 2021 Corresponding author Il Hyoung Cho: +82-64-754-3482, cho0904@jejunu.ac.kr c 2021, The Korean Society of Ocean Engineers This is an open access article distributed under the terms of the creative commons attribution non-commercial license (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
内部流体共振对浮动OWC装置性能的影响
本文研究了浮动振荡水柱(OWC)装置在规则波中的性能。OWC模型具有中空圆柱体的形状。假设线性势理论,采用匹配特征函数展开法求解衍射和辐射问题。辐射问题涉及到浮式OWC装置的起伏运动和气室内的振荡压力所产生的波的辐射。研究了激励力、水动力、流量、室内气压和升沉运动响应在不同系统参数下的特性,如OWC内半径、OWC的牵伸和涡轮常数。根据提取的波浪能和捕获宽度估算了浮动OWC装置的效率。具体而言,内部流体区域的活塞型共振与升沉运动共振对浮式OWC装置的性能起着重要作用。开发的预测工具将有助于确定影响浮动OWC装置在波浪中的性能的各种设计参数。通讯作者Il Hyoung Cho: +82-64-754-3482, cho0904@jejunu.ac.kr c 2021, The Korean Society of Ocean Engineers这是一篇开放获取的文章,根据创作共用署名非商业许可(http://creativecommons.org/licenses/by-nc/4.0)的条款分发,允许不受限制的非商业使用、分发和在任何媒介上复制,前提是原始作品被适当引用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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