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The effect of gravity on the dynamic characteristics and fatigue life assessment of offshore structures

机译:重力对海上结构动力特性和疲劳寿命评估的影响

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This paper intends to draw attention to the influence of gravity on the dynamic response and fatigue damage assessment of offshore structures. In traditional fatigue life calculation, the gravity loads of structures are assumed to only contribute to the mean stress of the structures. This paper examines the significance of P-Delta (P-h) effects and the stress "stiffening/softening" induced by gravity. This paper first explains the two aforesaid gravity induced effects, with studies on their influence on both eigenperiod and fatigue life assessment. A modal analysis of a typical offshore structure with large degrees of freedom is followed, to identify the dynamic characteristics influenced by the gravity effects. It is discovered that gravity load can induce a tendency to cause additional compressive and tensile forces to coexist in various structural components, causing the eigenperiods to increase, decrease or even cross each other. Compared to the stress "stiffening/softening" effects, the P-Delta effects on tuning the structure's stiffness and eigenperiods are insignificant in mild sea states. Furthermore, based on the nonlinear dynamic response calculation and a type of efficient wave energy inputs, a procedure for calculating fatigue damage is adopted and a systematic investigation of fatigue calculation of the structure is performed. It is discovered that ignorance of the gravity loads can underestimate the fatigue damage by up to 24%. Finally, through a series of investigations, it is discovered that gravity can have significant effects on both the response statistics and frequency content of the structural responses. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在提请注意重力对海上结构动力响应和疲劳损伤评估的影响。在传统的疲劳寿命计算中,假定结构的重力载荷仅有助于结构的平均应力。本文研究了P-δ(P-h)效应的重要性以及重力引起的应力“变硬/变软”。本文首先解释了上述两种引力效应,并研究了它们对本征周期和疲劳寿命评估的影响。随后对具有较大自由度的典型海上结构进行了模态分析,以确定受重力作用影响的动力特性。已经发现,重力载荷会引起趋向于引起附加的压缩力和拉伸力共存于各种结构部件中,从而导致本征周期彼此增大,减小甚至交叉。与应力“加强/软化”效果相比,在柔和的海况下,P-Delta对调整结构的刚度和本征周期的影响微不足道。此外,基于非线性动力响应计算和有效波能输入的类型,采用了计算疲劳损伤的程序,并对结构的疲劳计算进行了系统的研究。发现重力载荷的无知会低估疲劳损伤多达24%。最后,通过一系列研究,发现重力可以对响应统计和结构响应的频率含量产生重大影响。 (C)2015 Elsevier Ltd.保留所有权利。

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