漂浮在多孔海床上的孤立双层同轴多孔圆柱结构绕辐射研究

SCATTERING AND RADIATION Study On AN ISOLATED DOUBLE-LAYER COAXIAL POROUS CYLINDER STRUCTURE FLOATING ON A POROUS SEABED

  • 摘要: 为监测深海的水质情况,该文从实际工程角度出发,设计了一款新型双层同轴多孔圆柱结构。考虑到多孔结构有很好的消波作用,因此将该文模型设计成双层柱壁面带孔的圆柱结构。考虑到实际海床是多孔的,因此从理论上对漂浮在多孔海床上的孤立双层同轴多孔圆柱结构的绕辐射问题展开了研究。基于小振幅波理论,采用特征函数展开法和达西定律推导了漂浮在多孔海底上的孤立双层同轴多孔圆柱结构的速度势和自由表面高程的表达式。通过匹配特征函数法求得速度势中的未知系数。为保证该文程序的正确性,将该文模型进行退化并和现有结果进行对比,在完成验证后,对漂浮在多孔海底上的孤立双层同轴多孔圆柱结构展开了详细的参数化研究,重点研究多孔海床对多孔圆柱结构水动力特性的影响。该文计算结果能够为后续的研究提供理论依据。

     

    Abstract: To monitor the water quality in the deep sea, the study designs a new double-layer coaxial porous cylinder structure from a practical engineering point of view. Considering that the porous structure has a good wave attenuation effect, the model proposed is designed as a double-layer cylinder system with holes on the wall surface of the cylinder. Considering that the actual seabed is porous, the studies of scattering and radiation from an isolated double-layer coaxial porous cylinder structure floating on a porous seabed are theoretically investigated. Based on the assumption of the small amplitude wave theory, the expressions for the velocity potential and free surface elevation of an isolated double-layer coaxial porous cylinder structure floating on a porous seabed are derived using the eigenfunction expansion method and Darcy's law. The unknown coefficients in the velocity potential are obtained by the matching feature function method. To ensure the correctness of the program, the model proposed is reduced and compared with the existing results. After completing the validation, a detailed parametric study is carried out on an isolated double-layer coaxial porous cylinder structure floating on a porous seabed, with a focus on the influence of the porous seabed on the hydrodynamic characteristics of the porous cylinder structure. The studying results can provide a theoretical basis for subsequent studies.

     

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