矿区输气管道波纹管补偿器承载能力的估算

V. Stryzhalo, M. Zarazovskii, A. Bohdan, Z. Yaskovets, V. Antonchenko
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引用次数: 2

摘要

矿山生产区域管道的受力状态必须考虑地面位移的影响。在这种情况下,设计管道的规则包括额外的动作,如壁厚增加或u形补偿器的安装。乌克兰的煤炭采矿业需要扩大煤矿生产区域。这就导致了老旧的管道由于地面位移而破裂的情况,而这些管道的设计并不是为了承受这种载荷。“灭火”原则适用于本案。它包括在矿山生产的某一阶段(所谓的熔岩),如挖出长段、切割和打磨之前采取应力减少行动,这需要大量人力和物力的参与。但是,在某些情况下,即使大规模应用这些措施也不能使应力降低到可接受的水平(特别是对于直径小于200mm的管道)。为了解决这一问题,提出了波纹管补偿器的实现方法。目前的工作包括:•对BC进行实验研究,以获得其承载能力并验证制造商保证的设计参数;•用有限元法模拟BC加载过程,调整BC层之间的接触建模方式,使其与实验结果最吻合;•将所得结果应用于煤矿生产实际管道的应力状态建模。介绍了DN100菌体BC的实验研究结果。它们包括:有轴向位移限制的水压试验;不同幅值的拉压循环与同时加载的燃气管道内压运行值;破裂压力测定。根据试验结果、数值模拟和国内专用的管道应力状态评估软件,确定了埋地天然气管道的最佳位置和所需的bc数量。所介绍的工作结果使我们不仅能够在矿山生产领域实施BCs到天然气管道DN100,而且还获得了创建更大直径BCs的必要经验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of the Load Carrying Capacity of the Bellows Compensator for Gas Pipelines in the Areas of Mining Production
The stress state of pipelines in areas of mine production requires obligatory consideration the influence of ground displacements. In this case the rules for design pipelines include the additional actions, such as the wall thickness increasing or U-shaped compensators installation. The Ukrainian coal mining industry requires the expanding of mine production areas. It leads to the situation where old pipelines, which are not designed for such loads, could rupture due to ground displacements. The principle of “extinguish a fire” is applied in this case. It consists in applying of stress reduction actions before certain stage of mine production (so-called lava), such as digging out long sections, cutting and sanding, which require the involvement of significant human and material resources. But, in some cases, even the large-scale application of these actions does not lead to the stress reduction to the acceptable level (especially for pipelines of diameter less then 200mm). So, to solve this problem the implementation of bellow compensators (BC) is proposed. The present work consists of: • experimental investigations of BC which are carried out in order to obtain its bearing capacity and to validate its designed parameters guaranteed by the manufacturer; • simulation of the BC loading process using FEM with adjusting the way of contact modelling between the BC layers in such manner, to be best correlate with the results of experiments; • the application of obtained results for modelling of stress state of real pipelines in the areas of coal mine production. The results of experimental investigation of BC of DN100 is presented. Their include: hydrotest with axial displacements limitation; tension-compression cycles for different values of amplitude with simultaneously loading of the operating value of gas pipeline internal pressure; rupture pressure determination. Based on the experimental results, numerical modelling and specified domestic software for stress state assessment in pipelines the optimal locations and the required number of BCs is determined for buried gas pipelines. The results of presented works allowed us not only to implement the BCs to gas pipelines DN100 in areas of mine productions, but also the necessary experience for creation of larger diameters BCs is obtained.
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