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Performance Analysis of a 3D Axisymmetric Oscillating Water Column

机译:3D轴对称振荡水柱的性能分析

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This paper presents an analysis, by numerical simulation, of the effects Of some geometric parameters on the efficiency of an axisymmetric oscillating water column wave energy converter by using ANSYS ICEM CFD and CFX. The study is focused, principally, on the variation of power take off size, front wall shape, air column size, wave conditions and the chamber upper surface shape. A Stokes 2nd order wave is generated in a numerical wave tank in which the propagation is predicted by the use of the Reynolds averaged Navier Stockes (RANS) equations, k-ε turbulence model and the two-phase homogeneous volume of fluid (VOF) model. The power take off is modeled by an orifice and the flow parameters, air pressure and velocity, are calculated at its center. Simulation results shows that the orifice diameter, the front wall orientation vs. flow direction and the air column size affect, in a remarkable manner, the device performance, whereas the number of orifices has no physical impact.
机译:本文通过数值模拟,通过使用ANSYS ICEM CFD和CFX来提出一些几何参数对轴对称振动水柱波能量转换器效率的影响。该研究主要集中在功率取消尺寸,前壁形状,空气柱大小,波条件和腔室上表面形状上的变化上。在数字波罐中产生Stokes 2nd订购波,其中通过使用雷诺平均Navier股票(RANS)方程,K-ε湍流模型和流体(VOF)模型的两相均匀体积的传播来预测传播。功率起飞由孔口和流量参数,空气压力和速度建模,在其中心计算。仿真结果表明,孔口直径,前壁取向与流动方向和空气柱大小以卓越的方式影响器件性能,而孔口的数量没有身体影响。

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