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Experimental study of motions of two floating offshore structures in waves

机译:海浪中两个浮式海上结构运动的实验研究

摘要

Drilling is carried out in deeper to deeper waters around the globe to meet growing demands for oil and natural gas, and a number of multi body structures are deployed in various oil fields in the world. Investigation of hydrodynamic interaction of offshore structures is therefore worthwhile. Hydrodynamic interaction between floating offshore structures affects motion and relative motion especially during loading and offloading operations. Hydrodynamic interactions may lead to large motions of floating bodies that would cause damage to moorings and offloading systems and may collide with each other. This research work discusses experimental results of hydrodynamic interaction in surge, heave and pitch motion, relative motion and relative distance between a Tension Leg Platform (TLP) and semi-submersible (Tender Assisted Drilling) in regular waves. The experiment is conducted without tendon because of the depth limitation of the Towing Tank. However, in order to consider the contribution of mooring in linear direction, appropriate stiffness of horizontal springs have been used. The experiment was conducted for a full scale wave height of 3.77 m to 12.49 m for a separation distance of 21.7 m. From the analyses of the experimental and numerical results, it can be concluded that nonlinearity of the wave has an important effect on increasing the motion especially in the natural frequency region. Finally, a number of recommendations have been made for further study.
机译:为了满足对石油和天然气日益增长的需求,在全球越来越深的海域进行钻井,并且在世界各地的油田中部署了许多多体结构。因此,研究海上结构的水动力相互作用是值得的。浮动海上结构之间的水动力相互作用会影响运动和相对运动,尤其是在装卸作业期间。流体动力相互作用可能导致浮体的大运动,这将对系泊系统和卸载系统造成损害,并可能相互碰撞。这项研究工作讨论了在规则波浪中在喘振,升沉和俯仰运动,相对运动以及张力腿平台(TLP)和半潜式(Tender Assisted Drilling)之间的相对运动和相对距离的水动力相互作用的实验结果。由于拖曳罐的深度限制,因此在没有腱的情况下进行了实验。但是,为了考虑系泊在线性方向上的作用,已经使用了水平弹簧的适当刚度。在3.77 m至12.49 m的满量程波高,21.7 m的分离距离下进行了该实验。通过对实验和数值结果的分析,可以得出结论,波的非线性对增加运动具有重要影响,尤其是在固有频率区域。最后,提出了一些建议以供进一步研究。

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