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Enhancing the primary efficiency of an oscillating water column wave energy converter based on a dual-mass system analogy

机译:基于双质量系统的类比,提高振荡水柱波能量转换器的初效

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The beneficial effects of designing an oscillating water column (OWC) wave energy converter (WEC) by associating the hydrodynamics of the oscillating water masses to a dual-mass systems are described. The primary efficiency of a simple one degree of freedom WEC as well as a dual-mass WEC concept is derived analytically for shallow water waves. It is observed that substantial improvements in primary efficiency bandwidth could be reached by the application of the dual-mass concept. The primary efficiency of an OWC device deployed on stepped sea bottom is subsequently investigated, based on both numerical and experimental approaches, as an example of a dual-mass system. In the numerical approach, the performance of the device is estimated in both regular and random waves. A comprehensive experimental campaign is carried out to validate the numerical results as well as to investigate the efficiency improvements achieved by adding the step in the sea bottom for various cases of incident wave heights and turbine damping. It is observed that significant improvements in the performance of the OWC device in the stepped sea bottom condition can be reached, which corresponds to the implementation of the dual mass system in the conceptual design of this device. (C) 2018 Elsevier Ltd. All rights reserved.
机译:描述了通过将振荡水团的流体动力学与双质量系统相关联来设计振荡水柱(OWC)波能转换器(WEC)的有益效果。简单的一自由度WEC以及双质量WEC概念的主要效率是通过浅水波的分析得出的。观察到,通过应用双质量概念可以实现一次效率带宽的显着改善。随后,基于数值和实验方法,以双质量系统为例,研究了部署在阶梯式海底上的OWC设备的主要效率。在数值方法中,在规则波和随机波中都可以估算设备的性能。进行了全面的实验,以验证数值结果并研究通过增加海底台阶来应对各种入射波高和涡轮阻尼的情况所实现的效率改善。可以观察到,在阶梯式海底条件下,OWC设备的性能可以得到显着提高,这与该设备概念设计中双质量系统的实现相对应。 (C)2018 Elsevier Ltd.保留所有权利。

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