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RELATIVE INFLUENCE OF SOIL STIFFNESS AND ELBOW GEOMETRY ON BURIED PIPING THERMAL STRESSES

机译:土的刚度和肘部几何形状对埋管热应力的相对影响

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The design of buried piping systems requires special considerations. Historically, buried piping was evaluated for thermal expansion and contraction using simple hand calculations considering the piping to be fully-constrained by the surrounding soil. With the development of analytical software, more advanced analysis of buried piping is possible considering detailed piping routing and the stiffness of the surrounding soil and of the piping itself (in cases of more flexible piping materials). Typically, the areas of highest thermal stress occur at changes in direction (i.e. elbows, etc.) due to the applied moments, and the relative stress magnitude is influenced by the stiffness of the surrounding soil. Due to the relatively high coefficient of thermal expansion of polyethylene, stresses in buried piping due to thermal expansion and contraction are of particular note for high density polyethylene (HDPE) piping. This paper examines the relative influence of the analytical representations of a variety of HDPE piping elbow geometries (e.g. mitered elbows, molded elbows, etc.) and corresponding soil restraint. The study demonstrates that total longitudinal stress calculated in a finite element analysis may be reduced using minor to moderate efforts of refinement.
机译:地下管道系统的设计需要特殊考虑。历史上,考虑到管道被周围土壤完全约束,使用简单的手动计算就评估了地下管道的热膨胀和收缩。随着分析软件的开发,考虑到详细的管道布线以及周围土壤和管道本身的刚度(在管道材料更灵活的情况下),可以对埋地管道进行更高级的分析。典型地,由于施加的力矩,在方向上的变化(即,弯头等)上发生最高热应力的区域,并且相对应力的大小受周围土壤的刚度影响。由于聚乙烯的相对较高的热膨胀系数,对于高密度聚乙烯(HDPE)管道,由热膨胀和收缩引起的埋入式管道中的应力尤为明显。本文研究了各种HDPE管道弯头几何形状(例如,斜接弯头,模制弯头等)和相应的土壤约束的分析表示的相对影响。该研究表明,使用较小或中等强度的细化可以减少在有限元分析中计算出的总纵向应力。

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