采用桩-梁-拱方法对地铁车站边桩动态施工力学的研究

Xingzhong Nong, Xingkai Pei, Shuai Zhang, Gongning Liu
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摘要

本文以广州地铁十一号线工程天河东站为研究对象,采用桩-梁-拱(PBA)工法分析了车站土拱效应(SAE)在土方开挖过程中的形成机理,研究了不同桩间距条件下不同施工阶段边桩的力学和变形规律。结果表明,桩间 SAE 的形成、发展和破坏与施工过程密切相关。过大和过小的桩间距都不利于桩间 SAE 的形成;当桩间 SAE 位于桩与桩之间时,桩间 SAE 的作用就会大大增强。在复合衬砌系统中,支护桩和桩间围护结构对桩后土体起着有效的支护作用。桩身的侧向变形在完成扣拱至第一土层开挖时最为显著,这也是减少边桩侧向变形的关键施工阶段。边桩的轴向力随着车站的开挖逐渐增大,在第一土层开挖时变化最为剧烈。桩间距对侧桩垂直沉降和轴力的影响远大于水平位移和弯矩。
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Study on the dynamic construction mechanics of side piles in metro station using the pile-beam-arch method
Based on the Tianhe East Station in Guangzhou Metro Line 11 engineering, this paper analyzes the formation mechanism of soil arching effect (SAE) of station by pile-beam-arch (PBA) method in the excavation process and studies the mechanics and deformation laws of side piles in different construction stages under different pile spacing conditions. The results show that the formation, development and destruction of SAE between piles are closely related to construction process. Both too large and too small pile spacings are not conducive to the development about SAE between piles; when it is located between them, the SAE between piles exerts greatly. In the form of composite lining system, supporting piles as well as SAE between piles play an effective role in supporting soil behind piles. The lateral deformation of pile body is most significant in the completion of buckle arch to the excavation of first soil layer, which is the critical construction phase to reduce lateral deformation of side pile. The axial forces of side pile increase gradually with the excavation of station, and the change is the most drastic at the excavation for first soil layer. The influence of pile spacing on vertical settlement and axial force of side piles is much greater than that of horizontal displacement and bending moment.
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