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STRESS ANALYSIS OF PIPE LOWERING-IN PROCESS DURING CONSTRUCTION

机译:施工过程中管道渗水过程的应力分析

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Stress analysis is a prerequisite of Engineering Critical Analysis (ECA) of pipeline girth welds in new constructions. Such analysis is required in pipe construction standards, such as API Standard 1104 Appendix A. However no specific procedures of stress analysis are usually prescribed in pipeline construction standards. Although the input stress for ECA is supposedly to include all stresses during the life time of the pipelines, the most significant stress is usually the stress imposed on the pipelines in the lowering-in process during construction.rnVarious factors affecting the lowering-in stress were examined in this paper. Some of the dominant factors are the relative lift height of the pipe, cover depth, and the number of lift points. The number of lift points is related to the number of sidebooms used in construction and is determined by the diameter and wall thickness of the pipe (or pipe unit weight). The longitudinal stress is strongly affected by the number of sidebooms and the relative spacing and load distribution of the sidebooms. Practical considerations are given to the load capacity of the sidebooms and lift height variation in a pipeline construction project.
机译:应力分析是新建筑中管道环缝焊缝的工程关键分析(ECA)的前提。管道施工标准(例如API标准1104附录A)要求进行此类分析。但是,管道施工标准中通常没有规定应力分析的特定程序。尽管ECA的输入应力被认为包括了管道寿命期间的所有应力,但最显着的应力通常是在施工过程中的降低过程中施加在管线上的应力。在本文中进行了研究。一些主要因素是管道的相对提升高度,覆盖深度和提升点数。提升点的数量与建筑中使用的侧梁的数量有关,并取决于管道的直径和壁厚(或管道单位重量)。纵向应力受到侧鼓的数量以及侧鼓的相对间距和载荷分布的强烈影响。实际考虑了管道建设项目中边梁的承载能力和举升高度的变化。

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