The Reliability Analysis of a Jacket Platform under Ice Loads Based on Respond Surface Method

Jiayu Fang, Yu Zhang, F. Zhang, Hongxiang Xiong, Yi Wang
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Abstract

Objective: The jacket platform is made of various types of steel pipes and beams welded, mainly used in shallow water areas, such as Bohai oilfield in China. In winter, the sea area where the platform is located will freeze, and the influence of ice load on the platform can not be ignored. So the influence of ice load on the reliability of jacket platform is studied in this paper. Methods: In this research, the finite element model of the jacket platform was established in the form of beam element, and the loads were applied from different directions to find the load direction with the greatest influence on the platform state. When calculating the ultimate load of the platform structure, it is necessary to carry out nonlinear analysis. Selecting the ice load condition, increasing the ice load step by step on the platform structure. As the applied load gradually increases, the platform will appear nonlinear, then the ultimate load of the jacket platform will be obtain. The pile radius and pile thickness are uncertain components in the reliability study of the jacket platform due to manufacture, processing, and other factors, therefore the values of the pile's parameters are all random. Consider the deviation of geometric parameters with the extreme value type I distribution of ice load, the limit state equation for the strength failure of the platform under ice loads is obtained using Response Surface Method, then the reliability of the platform is calculated by the Monte Carlo method and First Order Second Moment Reliability method. Results: By nonlinear analysis, the ultimate bearing capacity of the platform studied in this paper is about 8000kN. The reliability probability of the platform calculated by Monte Carlo method is 0.9999993, and the reliability index is 4.813. The reliability probability of the platform calculated by the first order second moment method is 0.9999994, and the reliability index is 4.852. Conclusion: The results obtained by the two methods are almost the same, and the reliability index is very large, indicating that the platform can operate safely and reliably under the ice load.
基于响应面法的冰荷载作用下导管架平台可靠性分析
目的:导管架平台由各种类型的钢管和横梁焊接而成,主要用于浅水地区,如中国渤海油田。在冬季,平台所在海域会结冰,冰荷载对平台的影响不容忽视。因此,本文研究了冰荷载对导管架平台可靠性的影响。方法:本研究以梁单元的形式建立夹套平台的有限元模型,从不同方向施加荷载,找出对平台状态影响最大的荷载方向。在计算平台结构极限荷载时,必须进行非线性分析。选择冰荷载工况,逐步增大平台结构冰荷载。随着外加载荷的逐渐增大,平台将出现非线性,此时将得到夹套平台的极限载荷。在导管架平台可靠性研究中,桩半径和桩厚是受制造、加工等因素影响的不确定因素,因此桩参数的取值都是随机的。考虑几何参数与冰荷载极值型分布的偏差,采用响应面法得到了冰荷载作用下平台强度破坏的极限状态方程,然后采用蒙特卡罗法和一阶二阶矩可靠度法计算了平台的可靠度。结果:通过非线性分析,本文研究平台的极限承载力约为8000kN。蒙特卡罗法计算的平台可靠性概率为0.9999993,可靠性指标为4.813。一阶二阶矩法计算的平台可靠度概率为0.9999994,可靠度指标为4.852。结论:两种方法得到的结果基本一致,且可靠性指标很大,说明平台在冰荷载作用下能够安全可靠地运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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