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Finite Element Numerical Method for Nonlinear Interaction Response Analysis of Offshore Jacket Affected by Environment Marine Forces

机译:环境海洋力量对海上夹克非线性相互作用响应分析的有限元数值方法

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In this paper a nonlinear response of a fixed offshore platform under the combined forces of waves, wind and sea currents is presented. Wave force acting on the elements is calculated using Morison equation. Hydrodynamic loads on horizontal and vertical tubular members and the dynamic response of offshore fixed platform coupled with distribution of displacement, axial force, and bending moment along the base of the platform for regular and severe cases have been investigated. The structure must be able maintain production in a one-year wave return period condition and also to be able to continue with one hundred-year storm return period. The results of this study show that bending moment values with a one-year wave return period condition for the base platform and junction of platform to deck are 70 percent and 59 percent, respectively more than bending moment with a one-year wave return period. The direction of wave and wind hit has significant effects on the shift platform response, also nonlinear response is important for the safe design and operation of offshore structures.
机译:本文提出了在波浪,风和海流共同作用下固定海上平台的非线性响应。作用在单元上的波浪力使用莫里森方程计算。研究了正常和严重情况下水平和垂直管状构件上的流体动力载荷以及海上固定平台的动力响应,以及沿平台底部的位移,轴向力和弯矩的分布。该结构必须能够在一年的波浪返回期条件下维持生产,并且还能够继续一百年的风暴返回期。这项研究的结果表明,基础平台和平台与甲板的交汇处的具有一年回波周期条件的弯矩值分别比具有一年回波周期的弯矩高出70%和59%。波浪和风的撞击方向对换档平台的响应有重要影响,非线性响应对于海上结构的安全设计和操作也很重要。

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