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Structural behavior of segmental tunnel linings for a large stormwater storage tunnel: Insight from full-scale loading tests

机译:大型雨水蓄水隧道分段式隧道衬砌的结构特性:全面荷载试验的启示

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The deeply-buried tunnels serve as an effective method for the sustainable management of stormwater to mitigate the waterlogging and sewer overflow problems of modern cities in rainy seasons. This paper presents a series of full-scale structural loading tests on the segmental lining of a large deeply-buried stormwater storage tunnel considering the operation conditions, in which the cycle of water inflow and drainage was repeated. The testing results show that water inflow has notable influences on the mechanical and structural behaviors of segmental lining. The bending moment increases slightly but the axial force decreases significantly with the increasing inner hydrostatic water head. The convergence deformation develops during water inflow and recovers in the process of drainage, following a parabola pattern. However, the deformation cannot be fully recovered after complete drainage, mostly due to the residual deformation of segmental joints. The structural responses of the segmental lining remain approximately constant subjected to a limited number of loading cycles. The effects of water inflow on the distribution of internal forces and deformation deviate from the elastic solutions for homogeneous ring subjected to isotropic inner pressure. The influences of bending moment and axial force on joint behavior are unified through eccentricity. Three distinct zones associated with the interaction condition between adjacent blocks at the joint are identified for the relationship between joint deformation and eccentricity, and also for the relationship between joint rotational stiffness and eccentricity. The observations made in the current study may shed light on the design and construction of similar projects in pilot cities committed for the Sponge City policy of China.
机译:深埋的隧道是雨水可持续管理的有效方法,可减轻雨季现代城市的涝灾和下水道溢流问题。考虑到运行条件,本文对大型深埋雨水蓄水隧洞的分段衬砌进行了一系列的全面结构荷载试验,其中重复了进水和排水的循环。测试结果表明,进水量对分段衬砌的力学和结构性能有显着影响。弯矩略有增加,但轴向力随着内部静水压头的增加而显着减小。收敛变形在水流入期间发展,并在排水过程中以抛物线模式恢复。但是,完全排水后,变形不能完全恢复,这主要是由于节理接头的残余变形所致。在有限数量的加载循环下,分段衬砌的结构响应保持近似恒定。入水对内力分布和变形的影响与均质环承受各向同性内压的弹性解不同。弯矩和轴向力对关节行为的影响通过偏心来统一。对于关节变形和偏心率之间的关系,以及对于关节旋转刚度和偏心率之间的关系,确定了与关节处相邻块之间的相互作用条件相关的三个不同区域。本研究的观察结果可能会为致力于中国海绵城市政策的试点城市的类似项目的设计和建设提供启示。

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