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Hydrodynamic response for flexible connectors of mobile offshore base at rough sea states

机译:恶劣海况下海上移动基地柔性连接器的水动力响应

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Mobile offshore base (MOB) was treated as a research object, and a simplified algorithm was developed for determining the dynamic constraint forces on flexible connectors of MOB at rough sea states. The algorithm was adopted to calculate and analyze the fluctuation laws between dynamic constraint forces and different parameters. The wave loads on MOB structures were evaluated based on the revised Morison equation instead of potential flow theory, and the conventional computational methods were simplified. The numerical results of the simplified algorithm were compared to those of the algorithm based on potential flow theory for validating the correctness and reasonability of the simplified algorithm. The simplified algorithm was used to estimate the dynamic constraint forces on flexible connectors of MOB under different sea states, wave incident directions, and connector stiffness values. The results show as the wave angle increases, the dynamic constraint force decreases in the x direction, while increases first and then decreases in the y and z directions; the dynamic constraint force increases as the sea state increases, and shows a trend of linear increasing with the connector stiffness increasing; the dynamic forces on different connectors are well even in the same conditions.
机译:以移动近海基地(MOB)作为研究对象,并开发了一种简化算法,用于确定在恶劣海况下MOB柔性连接器上的动态约束力。该算法用于计算和分析动态约束力和不同参数之间的波动规律。基于修正的莫里森方程而不是势流理论对MOB结构的波浪载荷进行了评估,简化了传统的计算方法。将简化算法的数值结果与基于势流理论的算法的数值结果进行比较,以验证简化算法的正确性和合理性。该简化算法用于估计在不同海况,波入射方向和连接器刚度值下,MOB柔性连接器上的动态约束力。结果表明,随着波角的增大,动态约束力在x方向上减小,而在y和z方向上先增大,然后减小。动态约束力随海况的增加而增加,并随着连接器刚度的增加呈线性增加的趋势。即使在相同条件下,不同连接器上的动力也很好。

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