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HYDRODYNAMIC INVESTIGATION OF A NOVEL CONCEPT OF OWC TYPE WAVE ENERGY CONVERTER DEVICE

机译:OWC型波能转换器的新型概念的水动力研究

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摘要

In the present study, the hydrodynamic performance of a novel and efficient concept of a floating Oscillating Water Column device has been investigated. The new concept consists of two chambers that are placed in the upstream (fore chamber) and in the downstream (rear chamber) with respect to the incident wave direction. The rear chamber acts mainly similar to a Backward Bent Duct Buoy system, while the design of the fore chamber follows conventional types of Oscillating Water Column systems with the harbour plates (bottom plate as well as side plates) elongated outside of the fore chamber. The primary efficiency of the devised concept has been investigated in the frequency domain. In this context, to solve the corresponding diffraction and radiation problems due to the influence of the air pressure inside the chambers as well as motions of the body, an in-house code has been developed in 2D using the Boundary Element Method based on linear wave theory. The obtained numerical results show that the introduced concept has advanced hydrodynamic efficiency in a broad range of waves.
机译:在本研究中,已经研究了一种新颖且有效的浮动振荡水柱装置的流体动力性能。新概念由两个相对于入射波方向分别位于上游(前室)和下游(后室)的室组成。后腔室的功能主要类似于后弯管浮标系统,而前腔室的设计遵循传统类型的振荡水柱系统,而前腔室的底部(港湾板和侧板)加长。已经在频域中研究了所提出概念的主要效率。在这种情况下,为了解决由于腔室内的气压以及人体运动的影响而引起的相应的衍射和辐射问题,已经使用基于线性波的边界元方法以二维方式开发了内部代码理论。所得数值结果表明,引入的概念在大范围的波浪中具有先进的流体动力效率。

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