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Mathematical modeling of oscillating water column wave energy converter devices over the undulated sea bed

机译:波状海床上振荡水柱波能量变换器装置的数学建模

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The present study deals with the hydrodynamic performance of an OWC (oscillating water column) wave energy converter device placed on an undulated bed. The bed undulation is finitely extended and beyond that, the water bed is uniform in nature. The mathematical problem is studied in the two-dimensional Cartesian coordinate system under the linearized water wave theory. To solve the associated boundary value problem, a coupled eigen-function expansion - boundary element method is used. The numerical convergence of the coupled eigenfunction expansion - boundary element method is provided. The effects of the width of the OWC device chamber, front wall submergence depth and inclination with the vertical axis, and the bed undulations on the hydrodynamic efficiency of the OWC device is discussed in detail.
机译:本研究涉及放置在波状床上的OWC(振动水柱)波能量转换器装置的流体动力学性能。床起伏是有限延伸的,除了,水床本质上是均匀的。在线化水波理论下的二维笛卡尔坐标系中研究了数学问题。为了解决相关的边界值问题,使用耦合的EIGEN函数扩展 - 边界元方法。提供了耦合的特征函数扩展边界元件方法的数值汇聚。详细讨论了OWC装置腔室宽度,前壁浸没深度和垂直轴的倾斜度的影响,以及对OWC装置的流体动力学效率的床起伏。

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