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Hydrodynamic interactions between cnoidal waves and a concentric cylindrical structure with arc-shaped outer cylinder

机译:用弧形外筒与同心圆柱结构之间的流体动力学相互作用

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The interaction between cnoidal waves and a concentric cylindrical structure with an arc-shaped outer wall has been investigated theoretically using eigenfunction expansion approach. The arc-shaped outer cylinder is permeable and thin, protecting the porous dual-cylinder structure. Three cylinders are surface-piercing and rigidly installed on the flat bottom of an ocean. Analytical solutions were obtained based on the first approximation to cnoidal waves. A series of linear equations pertaining to unknown coefficients were solved using matching boundary conditions. Hydrodynamic forces on the cylinders and the diffracted wave faces around the cylinders were evaluated, and the effects of water depth, annular spacing, angle of incidence and structure configuration including the porosity parameter of the cylinders and the opening angle are illustrated via numerical results. The numerical results obtained for limiting cases agreed well with published results for a solid cylinder. The results indicated that the wave forces on the inner structure did not change significantly when the opening angle was greater than 2 pi/3. The hydrodynamic loads on the inner cylinder of the concentric cylindrical structure were significantly lower than the wave force on a single cylinder. Moreover, the value of wave force on the inner cylinder of a concentric dual-cylinder structure with an arc-shaped outer wall was similar to that on the inner cylinder of a concentric two-cylinder system.
机译:从理论上使用特征函数膨胀方法研究了CNOIDAL波和同心圆柱形结构的同心圆柱形结构。弧形外筒可渗透,薄,保护多孔双缸结构。三个气缸表面穿孔,刚性安装在海洋的平底上。基于对CNOIDAL波的第一近似获得分析溶液。使用匹配的边界条件解决了与未知系数有关的一系列线性方程。评价圆柱体上的流体动力和衍射波面的衍射波面是通过数值结果示出的水深,环形间隔,入射角和包括孔隙率参数的效果和打开角度的影响。用于限制案例的数值结果与固体圆筒的公开结果很好地达成良好。结果表明,当开口角大于2 pi / 3时,内部结构上的波力不会显着变化。同心圆柱形结构的内筒上的流体动力载荷显着低于单个汽缸上的波力。此外,具有弧形外壁的同心双缸结构的内筒上的波力的值类似于同心两缸系统的内筒上的相同时的双缸结构。

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