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Analytical and numerical study of dual-chamber oscillating water columns on stepped bottom

机译:阶梯状底部双室振荡水柱的分析与数值研究

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摘要

The effect on the efficiency of the device of implementing a dual-chamber oscillating water column (OWC) placed over stepped bottom is analysed. The mathematical problem is formulated in the two dimensional Cartesian coordinate system under the linear water wave theory. Two different mathematical approaches are adopted to solve the associated boundary value problem (BVP), one is the method of matched eigenfunction expansion and the other is the boundary integral equation method (BIEM). The numerical results show good agreement with the analytical results. The performance of the proposed device is analysed and compared with the typical single chamber OWCs with/without step and with dual-chamber OWCs over uniform bottom profile. The present investigation shows that by considering dual-chamber OWC device on the stepped sea bottom the performance of the device can be improved significantly in wide range of frequencies, as compared with the single chamber case. (C) 2014 Elsevier Ltd. All rights reserved.
机译:分析了在阶梯式底部放置双腔振荡水柱(OWC)对设备效率的影响。在线性水波理论下,在二维笛卡尔坐标系中提出了数学问题。采用两种不同的数学方法来解决相关的边值问题(BVP),一种是匹配特征函数展开法,另一种是边界积分方程法(BIEM)。数值结果与分析结果吻合良好。分析了所提出设备的性能,并与具有/不带阶跃的典型单腔OWC和具有均匀底部轮廓的双腔OWC进行了比较。本研究表明,与单室情况相比,通过在阶梯式海底上使用双室OWC设备,可以在很大的频率范围内显着提高该设备的性能。 (C)2014 Elsevier Ltd.保留所有权利。

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