Numerical prediction of the natural frequency of an Oscillating Water Column operating under resonant conditions

M. Torresi, F. Scarpetta, G. Martina, P. Filianoti, S. Camporeale
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引用次数: 5

Abstract

Among the different technologies developed in order to harness wave energy, the Oscillating Water Column devices are the most accredited for an actual diffusion. Recently, Boccotti has patented the REWEC1 (REsonant sea Wave Energy Converter solution 1), a submerged breakwater that performs an active coast protection, embedding an Oscillating Water Column device, which is capable of operating under resonant conditions with that sea state, which gives the highest yearly energy contribution. The REWEC1 dynamic behavior can be approximated by means of a mass-spring-damper system. According to this approximation, a criterion for evaluating the oscillating natural frequency of the REWEC1 has been derived. This criterion has been validated against both experimental results and computational fluid dynamics simulations, performed on a REWEC1 laboratory-scale model. The numerical simulations have shown a good agreement between measurements and predictions.
共振条件下振荡水柱固有频率的数值预测
在为了利用波浪能而开发的不同技术中,振荡水柱装置是最被认可的实际扩散装置。最近,Boccotti获得了REWEC1(共振海浪能量转换器解决方案1)的专利,这是一种水下防波堤,可以有效保护海岸,嵌入振荡水柱装置,能够在海况的共振条件下运行,从而提供最高的年能量贡献。REWEC1的动力特性可以用质量-弹簧-阻尼系统来近似。根据这一近似,推导出了一个评价REWEC1振动固有频率的判据。在REWEC1实验室规模模型上进行的实验结果和计算流体动力学模拟验证了这一准则。数值模拟结果表明,实测结果与预测结果吻合较好。
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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