在低温条件下将鞍形支管焊接到聚乙烯管上时焊接接头的应力-应变状态

N. Starostin, R. Tikhonov, M. A. Nikolaeva, M. Akimov
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引用次数: 0

摘要

研究目的。研究目的是比较分析在正常条件下使用标准技术和在低温条件下使用拟议技术为现有天然气管道焊接鞍形支管时焊接接头的应力应变状态。为实现目标,在 Python 编程环境中使用 Fenics 计算软件包,通过有限元法对热弹性状态数学模型进行了数值计算。计算网格使用 GMSH 程序建立。使用 Paraview 软件包实现了所得结果的可视化。根据在允许温度和低环境温度下将鞍形支管焊接到现有燃气管道上的计算实验,受热区的温度场、应力和应变的动态几乎相同。计算结果表明,在低温条件下使用拟议的技术将鞍形支管焊接到现有燃气管道的聚乙烯管上时,主要物理和机械过程将与正常条件下的焊接过程相同,并提供必要的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stress-Strain State of a Welded Joint in Welding a Saddle Branch to a Polyethylene Pipe under Low Temperatures
Purpose of research. The aim of the study is a comparative analysis of the stress-strain states of welded joints during welding of saddle branches to existing gas pipelines under normal conditions using standard technology and low temperatures using the proposed technology.Methods. To achieve the goal, a numerical implementation of the mathematical model of the thermoelastic state by the finite element method in the Python programming environment using the Fenics computing package was performed. The computational grid was built using the GMSH program. Visualization of the obtained results was implemented using the Paraview package.Results. On the basis of computational experiments of welding a saddle branch to an existing gas pipeline at permissible and low ambient temperatures, the dynamics of the temperature fields, stresses and strains in the heataffected zone are almost identical.Conclusion. The calculation results showed that when welding saddle branches to polyethylene pipes of existing gas pipelines at low temperatures using the proposed technology, the main physical and mechanical processes will proceed as in welding under normal conditions and provide the necessary strength.
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