天津科技 ›› 2023, Vol. 50 ›› Issue (3): 56-59.

• 基础研究 • 上一篇    下一篇

基于SolidWorks的设备集成舱基座有限元应力分析

张贺贺, 张宝雷, 孙冰   

  1. 中海油能源发展股份有限公司采油服务分公司 天津 300452
  • 收稿日期:2023-03-01 出版日期:2023-03-25 发布日期:2023-12-27

Finite Element Stress Analysis of Base of Integrated Cabin Based on SolidWorks

ZHANG Hehe, ZHANG Baolei, SUN Bing   

  1. CNOOC Energy Technology & Services-Oil Production Services Co.,Tianjin 300452,China
  • Received:2023-03-01 Online:2023-03-25 Published:2023-12-27

摘要: 针对FPSO水下检测中对集成式工作舱的应用需求,通过SolidWorks软件建立了集成式工作舱三维模型,依据设备分布情况对其结构进行设计及分析,并通过SolidWorks Simulation对集成式工作舱基座的复杂受力位置进行应力应变分析和针对性的优化基座设计。计算结果表明,吊机载荷对基座的影响主要体现在底板与底横梁接触面,应力、位移、应变分析有力证明了不同结构的受力差异,优化设计结构能将吊机对基座的载荷均衡分配和降低局部极限受力。研究提出的优化设计方案对集成式工作舱在复杂海洋环境应用有实际指导意义。

关键词: SolidWorks, 应力应变, 集成工作舱, 基座

Abstract: Addressing the application requirements of integrated working cabin in FPSO underwater detection,the three- dimensional model of the integrated working cabin is established through SolidWorks software. The structure of the integrated working cabin is designed and analyzed according to the equipment distribution,and the stress-strain of the complex stress position of the integrated working cabin base is analyzed through SolidWorks Simulation to optimize the base design. The calculation results show that the impact of the crane load on the base is mainly reflected in the contact surface between the bottom plate and the bottom beam. The stress,displacement and strain analysis effectively proves the stress difference of different structures. The optimal design of the structure can evenly distribute the load of the crane on the base and reduce the local ultimate force. The optimized design scheme proposed in this study has practical guiding significance for the application of the integrated working cabin in the marine complex environment.

Key words: SolidWorks, stress-strain, integrated working cabin, base

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