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A novel 2.5D method for solving the mixed boundary value problem of a surface effect ship

机译:一种求解表面效应船混合边值问题的新型2.5D方法

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摘要

When a surface effect ship (SES) sails in waves, the unsteady velocity potential of water can be decomposed into incident potential, sidehull radiation potential, sidehull diffraction potential and radiation potential due to fluctuating air pressure. The potentials related to sidehulls satisfy Neumann boundary conditions (BC) and have been successfully addressed using the 2.5D method. In contrast, the potential related to fluctuating air pressure satisfies mixed BC consisting of homogeneous Neumann BC on the wetted surface of sidehulls and non-homogeneous Dirichlet BC on the interface between air and water, which has never been studied using the efficient 2.5D method. In this paper, the 2.5D method is firstly proposed to solve the mixed boundary value problem (BVP), which can deal with the coupling between the fluctuating air pressure and sidehulls. By using the 2.5D method, the radiation wave and other relative hydrodynamic parameters of a SES due to the fluctuating air pressure are evaluated. The numerical results on motion response and the fluctuated air pressure of the SES show acceptable agreement with the experimental ones.
机译:当表面效应船(SES)在波中帆时,由于气压波动,水的不稳定速度电位可以分解成入射电位,侧向辐射电位,叠孔衍射电位和辐射电位。与侧壁相关的潜力满足Neumann边界条件(BC),并使用2.5D方法成功解决。相反,与波动气压有关的电位满足由均匀的Neumann Bc组成的混合Bc,在空气和水之间的界面上的界面的湿润表面和非均匀的Dirichlet BC上,从未使用过高效的2.5D方法进行了研究。在本文中,首先提出了2.5D方法来解决混合边值问题(BVP),其可以处理波动气压和侧壁之间的耦合。通过使用2.5D方法,评估由于波动的空气压力引起的SES的辐射波和其他相对流体动力学参数。运动响应的数值结果和SES的波动空气压力显示与实验性的可接受的一致性。

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