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Performance validation and optimization of a dual coaxial-cylinder ocean-wave energy extractor

机译:双同轴圆柱海浪能量提取器的性能验证和优化

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A point-absorber wave-energy extractor is developed, consisting of a dual coaxial-cylinder system, with the inner cylinder tension-tethered and an outer cylinder (floater) oscillating vertically. A permanent magnet linear generator (PMLG) is used as a power take-off (PTO) capturing wave energy from the relative motion of the two cylinders. The mathematical modeling of the system includes the coupling effects of the cylinder hydrodynamics and the PMLG behavior. It gives a rational and effective way of providing performance predictions and directions for optimization. The flat bottom shape of the floater is modified into a needle-like curved shape to minimize viscous losses, which leads to three-times increase in floater response, compared with the flat-bottom geometry and thus improved wave-energy capture. The behavior of the PTO in the presence of an appropriate supporting structure for the coaxial cylinders are investigated, and optimal operating conditions for energy extraction and mechanical to electrical conversion efficiency are determined. Experimental results of this coupled system in regular waves confirm the validity of the theoretical predictions and soundness of the engineering design. Optimizing the floater bottom shape and the operating conditions for energy extraction lead to a two-times increase in overall efficiency, even without any active control. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:开发了一种点吸收波能量提取器,它由一个双同轴圆柱系统组成,内部圆柱体受张力束缚,而外部圆柱体(浮子)则垂直振动。永磁线性发电机(PMLG)用作取力器(PTO),从两个气缸的相对运动中捕获波能。该系统的数学建模包括气缸流体动力学和PMLG行为的耦合效应。它提供了合理有效的方式来提供性能预测和优化方向。浮子的平底形状被修改为针状弯曲形状,以最大程度地减少粘性损失,与平底几何形状相比,浮子的响应增加了三倍,从而改善了波能捕获。研究了在同轴圆柱体有适当支撑结构的情况下PTO的性能,并确定了用于能量提取和机械至电转换效率的最佳操作条件。该耦合系统在规则波中的实验结果证实了理论预测的正确性和工程设计的正确性。即使没有任何主动控制,优化浮子底部形状和能量提取操作条件也会使总体效率提高两倍。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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