Yang Ming, Wang Dongyuan, Jia Haidong, Hu Wenjun, Zhao Yu, Tang Jungfeng
China Petroleum West Pipeline Co., Ltd., Urumqi, Xinjiang, China.
China National Petroleum Pipeline No. 1 Engineering Company, Langfang, Hebei, China.
Sci Rep. 2024 May 30;14(1):12439. doi: 10.1038/s41598-024-57936-9.
With the large-scale construction of oil and gas pipelines, the safety issues of long-distance buried pipelines in the service and construction have become increasingly prominent. The complex geological and topographical conditions of the special zone will put forwards extremely high requirements on pipe trench laying backfill materials and construction technology. For example, pipelines are inevitable to cross the active fault, while the trench backfilled with soil has limitations in protecting them from failure under the active fault displacement caused by the earthquake. Therefore, it is necessary to study the pipe-soil interaction mechanism, determine the stress state of the pipeline and propose a new backfilling material that can protect the pipeline from failure. Foam concrete (FC) provides a new choice to backfill the buried pipeline trench due to its high-homogeneity, lightweight, controllable-strength, and self-compacting. To further determine the applicability of the FC, the pipe-FC interaction mechanism is studied. Then, a FE model of the FC-pipeline-soil interaction system is established by Abaqus to quantitatively analyze the applicability of the FC based on the experimental data of the mechanical performance of the FC. It proves that using FC as trench backfill material has a noticeable protective effect on the pipeline under the earthquake-induced displacement of the normal fault. Furthermore, FC has a better protective effect on the pipeline subjected to compressive than tensile. Therefore, the reference for applying FC in trench backfilling of pipelines crossing normal fault is provided.
随着油气管道的大规模建设,在役和在建的长距离埋地管道安全问题日益突出。特殊区域复杂的地质和地形条件对管沟敷设回填材料及施工技术提出了极高要求。例如,管道不可避免地要穿越活动断层,而用土回填的管沟在保护管道免受地震引起的活动断层位移破坏方面存在局限性。因此,有必要研究管土相互作用机理,确定管道的应力状态,并提出一种能保护管道免受破坏的新型回填材料。泡沫混凝土(FC)因其高均匀性、轻质、强度可控和自密实性,为埋地管道管沟回填提供了新的选择。为进一步确定FC的适用性,对管 - FC相互作用机理进行了研究。然后,基于FC力学性能的试验数据,利用Abaqus建立了FC - 管道 - 土相互作用系统的有限元模型,以定量分析FC的适用性。结果表明,在正断层地震作用下,采用FC作为管沟回填材料对管道具有显著的保护作用。此外,FC对受压管道的保护效果优于受拉管道。因此,为FC在穿越正断层管道管沟回填中的应用提供了参考。