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首页> 外文期刊>International Journal of Technology >The Effect of Symmetrical and Asymmetrical Configuration Shapes on Buckling and Fatigue Strength Analysis of Fixed Offshore Platforms
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The Effect of Symmetrical and Asymmetrical Configuration Shapes on Buckling and Fatigue Strength Analysis of Fixed Offshore Platforms

机译:对称和非对称构造形状对固定式海洋平台屈曲和疲劳强度分析的影响

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The fixed jacket is still the most common offshore structure used for drilling and oil production. The structure consists of tubular members interconnected to form a three-dimensional space frame, which can be categorized into a column structure. The structure usually has four to eight legs that are battered to achieve stability against axial compressive loads and toppling due to wave loads. The configuration of a typical member on the jacket structure has significant influence on buckling and fatigue strength. Horizontal and diagonal braces play an important role in resisting the axial compression and wave load on the global structure. This paper discusses the effect of symmetrical and asymmetrical configuration shapes in buckling and fatigue strength analysis on two types of fixed jacket offshore platforms. The axial compressive and lateral (wave) loads were considered and applied to both structures. The material and dimensions of the two structures were assumed to be constant and homogenous. Crack extension and corrosion were not considered. To assess the buckling and fatigue strength of these structures, due to the symmetrical and asymmetrical configuration shape, the finite element method (FEM) was adopted. Buckling analysis was performed on these structures by taking two-dimensional planes into consideration to obtain the critical buckling load for the local plane; fatigue life analysis was then calculated to produce the fatigue life of those structures. The result obtained by FEM was compared with the analytical solution for the critical buckling load. The stress-strain curve was also applied to show the difference between symmetrical and asymmetrical shapes. For fatigue life analysis, the procedure of the response amplitude operator was applied.
机译:固定护套仍然是用于钻井和石油生产的最常见的海上结构。该结构由相互连接以形成三维空间框架的管状构件组成,可以将其分类为圆柱结构。该结构通常具有四到八个支腿,这些支腿受力击打,以实现抵抗轴向压缩载荷和波浪载荷引起的倾覆的稳定性。护套结构上典型构件的构型对屈曲和疲劳强度有重大影响。水平和对角撑杆在抵抗整体结构上的轴向压缩和波浪载荷方面起着重要作用。本文讨论了对称和非对称配置形状在两种固定式护套海上平台的屈曲和疲劳强度分析中的作用。考虑了轴向压缩载荷和侧向(波浪)载荷并将其应用于两种结构。假定这两个结构的材料和尺寸是恒定且均匀的。没有考虑裂纹扩展和腐蚀。为了评估这些结构的屈曲和疲劳强度,采用了对称和不对称的构形,因此采用了有限元方法(FEM)。通过考虑二维平面对这些结构进行屈曲分析,以获得局部平面的临界屈曲载荷。然后计算疲劳寿命分析以产生那些结构的疲劳寿命。通过有限元法获得的结果与临界屈曲载荷的解析解进行了比较。还应用应力-应变曲线来显示对称和不对称形状之间的差异。对于疲劳寿命分析,使用了响应幅度算子的程序。

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