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Application of pre-stressed technology in the crossing construction of the China–Myanmar Gas Pipeline

机译:预应力技术在中缅天然气管道穿越工程中的应用

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Concrete structure is commonly used in the anchorages of a large cable-suspended pipeline crossing construction. With the increase of span and load, the stress on the concrete anchorages may rise rapidly. In case of traditional anchoring structure fixed by anchor rods, concrete cracking will occur, thereby reducing the anchorage life. To solve this problem, the pre-stressed structure was designed to effectively improve the efficiency of anchoring and reduce engineering cost. In the crossing construction of China–Myanmar Gas Pipeline, the pre-stressed technology was used to establish an effective pre-stressed anchoring system, which integrates the pre-stressed structures (e.g. tunnel anchorages in the anchors) and the optimization measures (e.g. positioning mode, anchorage structure, concrete placement, pre-stressed, and medium injection), in line with the crossing structure and load features of this project. The system can delay the occurrence of concrete cracking and enhance the stress durability of the structure and anchoring efficiency. This technology has been successfully applied in the crossing construction of China–Myanmar Gas Pipeline, with good economic and social benefits, indicating that this technology is a new effective solution to the optimization of suspended pipeline anchorage structures, providing technical support for the development of pipeline crossing structure.
机译:混凝土结构通常用于大型电缆悬挂管道穿越结构的锚固中。随着跨度和荷载的增加,混凝土锚固上的应力可能会迅速上升。如果用锚杆固定传统的锚固结构,则会发生混凝土开裂,从而缩短锚固寿命。为了解决该问题,设计了预应力结构,以有效地提高锚固效率并降低工程成本。在中缅天然气管道穿越工程中,采用预应力技术建立了有效的预应力锚固系统,该系统综合了预应力结构(例如锚固中的隧道锚固)和优化措施(例如定位)。模式,锚固结构,混凝土浇筑,预应力和介质注入),以符合本项目的交叉结构和荷载特征。该系统可以延迟混凝土开裂的发生,并提高结构的应力耐久性和锚固效率。该技术已成功应用于中缅天然气管道穿越工程,具有良好的经济和社会效益,表明该技术是优化悬吊式管道锚固结构的新有效方法,为管道的发展提供了技术支撑。交叉结构。

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