首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >INFLUENCE OF NONLINEAR MOORING STIFFNESS ON HYDRODYNAMIC PERFORMANCE OF FLOATING BODIES
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INFLUENCE OF NONLINEAR MOORING STIFFNESS ON HYDRODYNAMIC PERFORMANCE OF FLOATING BODIES

机译:非线性系泊刚度对浮体水动力性能的影响

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Coupled dynamic analysis between floating marine structures and flexible members such as mooring lines and risers, is a challenging work in the ocean engineering field. Coupled analysis on mooring-buoy interactions has been paid more and more concern for recent years. For floating offshore structures at sea, the motions driven by environmental loads are inevitable. The movement of mooring lines occurs due to the excitation on the top by floating structures. Meanwhile the lines restrict the buoy's motion by forces acting on the fareleads. Positioning is the main function of mooring system, its orientation effects can't be ignored for floating structures such as semi-submersible, FPS, and TLP, especially when the buoy's equilibrium position shifting to another place. Similar as hydrostatic restoring forces, mooring force related with the buoy's displacement can be transformed into mooring stiffness and can be added in the differential equations of motion, which is calculated at its equilibrium point. For linear hydrodynamic analysis in frequency domain, any physical quantity should be linear or be linearized, however mooring stiffness is nonlinear in essence, so the tangent or differential stiffness is used. Steel chains are widely used in catenary mooring system. An explicit formulation of catenary mooring stiffness is derived in this article, which consists of coupled relations between horizontal and vertical mooring forces. The effects of changing stiffness due to the shift of equilibrium position on the buoy's hydrodynamic performance are investigated.
机译:在海洋工程领域,浮动海洋结构与诸如系泊缆绳和立管之类的柔性构件之间的耦合动力分析是一项具有挑战性的工作。近年来,对系泊浮标相互作用的耦合分析越来越受到关注。对于海上漂浮的海上结构,不可避免地受到环境载荷的驱动。系泊缆的运动是由于浮式结构在顶部激发而发生的。同时,这些线受到作用在指引线上的力的作用,从而限制了浮标的运动。定位是系泊系统的主要功能,对于诸如半潜式,FPS和TLP之类的漂浮结构,其定位效果不可忽视,尤其是在浮标的平衡位置移至另一个位置时。与静液压恢复力类似,与浮标位移相关的系泊力可以转换为系泊刚度,并可以添加到运动的微分方程中,该方程在平衡点处进行计算。对于频域中的线性流体动力分析,任何物理量都应为线性或线性化,但是系泊刚度本质上是非线性的,因此使用切线刚度或微分刚度。钢链广泛用于悬链系泊系统。本文推导了悬链式系泊刚度的明确表述,该公式由水平和垂直系泊力之间的耦合关系组成。研究了由于平衡位置的变化而引起的刚度变化对浮标水动力性能的影响。

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