FEATURES OF CALCULATING LONGITUDINAL DISPLACEMENTS OF PIPELINES LAID IN HETEROGENEOUS SOILS

V.A. Ivanov, N.A. Borisov, M.N. Chekardovskij, A.B. Shabarov, T. Ponomareva
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Abstract

Achieving and maintaining the required reliability of the linear part of the main gas pipelines is of particular importance. Emergency destruction usually leads to large gas leaks into the atmosphere and undersupply to consumers, significant costs for the restoration of main gas pipelines. The difficulty and cost of carrying out repairs of main gas pipelines directly depends on the difficult conditions of the route and special technical solutions are needed to achieve the stability and reliability of pipelines on low-bearing soils. Thus, on existing gas pipelines, their longitudinal movements occur under the action of longitudinal forces, which leads to an increase in the stress state of gas pipelines and even the destruction of pipes. The significant time duration of the increase in gas pipeline movements indicates that these movements occur due to the rheological properties of soils. An analysis of the stress state of such sections of gas pipelines is necessary to assess their reliability, timing and methods of repair. 
计算异质土中管道纵向位移的特点
实现并保持主要天然气管道线性部分所需的可靠性尤为重要。紧急破坏通常会导致大量天然气泄漏到大气中,造成用户供气不足,并为恢复主要天然气管道带来巨大成本。对主要天然气管道进行维修的难度和成本直接取决于线路的困难条件,需要特殊的技术解决方案来实现低承载力土壤上管道的稳定性和可靠性。因此,在现有的燃气管道上,其纵向移动是在纵向力的作用下发生的,这会导致燃气管道的应力状态增加,甚至导致管道破坏。燃气管道移动增加的持续时间很长,这表明这些移动是由于土壤的流变特性造成的。为了评估天然气管道的可靠性、维修时间和方法,有必要对这些管道段的应力状态进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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