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SUBMERGED TOWING PERFORMED BY A MONOHULL VESSEL

机译:由单壳血管进行淹没牵引

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During a submerged towing operation of a subsea module, the vessel motions combined with the hydrodynamic properties of the considered module will induce drag forces and dynamic loads on the towing configuration. These loads are important when evaluating different submerged towing concepts and will have implications for structural design with respect to the relevant limit states. However, since it is difficult to quantify the hydrodynamic properties of the towed module, model tests are useful for verifying coefficients which are further used in dynamic analyses of the towing configuration. The objective of this paper is to present an analysis methodology for determination of dynamic forces and hydrodynamic properties of a marine structure during a submerged towing operation. Emphasis is made on a simple analytical model of the dynamic forces based on DNV-RP-H103, and a detailed multibody time integration by means of the MARINTEK computer program SIMO (Simulation of complex marine operations). In order to model the submerged towing operation in SIMO, hydrodynamic properties of the considered towed structure are determined based on analytical formulas presented in DNV-RP-H103. The results from the SIMO model are in addition compared with measured response obtained from an experimental investigation. In general it is found that there is good agreement between experimental and calculated values when the hydrodynamic properties of the components have been identified.
机译:在海底模块的浸没牵引操作期间,血管运动与所考虑模块的流体动力学相结合将引起牵引配置上的拖曳力和动态载荷。当评估不同淹没的牵引概念时,这些载荷很重要,并且对相关限制状态的结构设计有影响。然而,由于难以量化牵引模块的流体动力学特性,因此模型测试对于验证在牵引配置的动态分析中进一步使用的系数可用于验证系数。本文的目的是提供一种分析方法,用于测定淹没牵引操作期间海洋结构的动态力和流体动力学性能。重点是基于DNV-RP-H103的动态力的简单分析模型,以及借助于Marintek计算机程序Simo(复杂海洋操作的仿真)的详细多体时间集成。为了在SIMO中模拟浸没式牵引操作,基于DNV-RP-H103中呈现的分析公式确定所考虑的牵引结构的流体动力学性质。与从实验调查中获得的测量响应相比,SIMO模型的结果也是如此。一般来说,当已经鉴定了组分的流体动力学性质时,实验和计算值之间存在良好的一致性。

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