海上双井架无约束动力学仿真

Q3 Engineering
Alaa Dandash, Wensheng Xiao, Hualin Liao
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引用次数: 0

摘要

摘要随着对石油和石油产品需求的增加,石油行业面临着对更复杂工具的需求,以更低的价格提高产量。钻具的复杂性表现在复杂的几何形状、制造、装配、变形、应力和作用在其上的载荷上。本研究介绍了一种海洋环境中的双井架模拟程序,通过提供接近真实状态的模拟,为更好地理解这一点迈出了一步。考虑井架处于平衡状态,然后利用现场数据模拟井架振动,以获得应力分布。这意味着井架可以在没有约束的情况下自由移动并在所有方向上引起变形。本文采用有限元方法对井架进行了静态和动态模拟,并对两种情况下的应力分布进行了比较。提供了关于环境工作条件分析的文献综述。结果表明,平台的振动大大增加了应力。连接到井架顶部的梁的最大组合应力增加了27%,而最大弯曲应力则增加了40%,并达到了相当高的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unconstrained Dynamic Simulation on Offshore Dual Derrick
SUMMARY With the increase in demand for oil and oil products, the petroleum industry is faced with the requirement for more complex tools to increase production at lower prices. The complexity of drilling tools is manifested in the complex geometry, fabrication, assembly, deformations, stresses and loads acting on them. This study introduces a dual derrick simulation procedure in a marine environment which provides a step towards a better understanding by giving a simulation close to the real state. The derrick was considered in equilibrium, and then the derrick vibration was simulated using field data in order to obtain stress distribution. This implies that the derrick can move freely and cause deformations in all directions without constraints. In this paper, the finite element method was employed to simulate the derrick in a static state and in motion, and then the obtained stress distribution was compared for both cases. A literature review on the analysis of environment working conditions is provided. The results showed that the vibration of the platform increased the stress considerably. The maximum combined stress increased by 27 %, while the maximum bending stress increased by 40 % and reached considerably higher values in the beams connected to the top of the derrick.
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来源期刊
International Journal for Engineering Modelling
International Journal for Engineering Modelling Engineering-Mechanical Engineering
CiteScore
0.90
自引率
0.00%
发文量
12
期刊介绍: Engineering Modelling is a refereed international journal providing an up-to-date reference for the engineers and researchers engaged in computer aided analysis, design and research in the fields of computational mechanics, numerical methods, software develop-ment and engineering modelling.
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