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Numerical investigations and optimizations of typical submerged box-type floating breakwaters using SPH

机译:使用SPH的典型浸没式箱式浮动防波堤的数值研究与优化

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Box-type floating breakwaters have been studied extensively. However, the examinations of the performances of them with different shapes or different numbers of boxes are limited. In addition, if it is possible to optimize the floating breakwaters by combining the optimized parameters in separated testing groups is still unclear. Consequently, in this study, four typical box-type floating breakwaters, i.e., dual rectangular breakwater, single rectangular breakwater, dual circular breakwater, and single circular breakwater, are selected to do extensive investigations using SPH. The coupling between DualSPHysics and MoorDyn is implemented and verified, and the coupled code can be applied to simulate the interactions between waves and moored floating structures. A total of 88 cases are modeled, and the effects of the geometry parameters on wave-attenuation performances of the breakwaters are clarified. The numerical results show that the performances of the breakwaters are greatly sensitive to the immersion depth. In general, the larger and lighter the breakwaters, the better the performances will be. Meanwhile, the dual rectangular breakwater performs the best in wave attenuations, and its motions and forces are smaller than single breakwaters. Importantly, combining the optimized parameters in each separated testing group is found to be effective to optimize the floating breakwaters.
机译:盒式浮动防波堤已经广泛研究。然而,用不同形状或不同数量的盒子的对它们的性能的检查是有限的。另外,如果通过组合分离的测试组中的优化参数可以优化浮动防波器,则仍然不清楚。因此,在本研究中,选择四个典型的箱式浮动防波堤,即双矩形防波堤,单矩形防波堤,双圆形防波和单圆形防波堤,使用SPH进行广泛的研究。实现和验证了双面物理和MoOrdyn之间的耦合,并且可以应用耦合代码来模拟波与波托的浮动结构之间的相互作用。建模共有88例,并阐明了几何参数对防波堤的波浪衰减性能的影响。数值结果表明,防波堤的性能对浸没深度大致敏感。一般来说,较大且较轻的防波堤,表现越好。同时,双矩形防波堤在波衰减中执行最佳,其动作和力小于单个防波堤。重要的是,发现发现每个分离的测试组中的优化参数有效地优化浮动防波堤。

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