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Segmental joint model tests of immersed tunnel on a settlement platform: A case study of the Hongkong-Zhuhai-Macao Bridge

机译:沉降平台下沉管隧道分段联合模型试验-以港珠澳大桥为例

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摘要

Although segmental elements have excellent deformation and anti-crack abilities, differential settlements of immersed tunnels caused by differential compression of soil (or foundation) and surcharge (or discharge) on the natural foundation section should be concerned in the service stage. Especially, when prestressed cables are cut off after immersing construction, shear keys on segmental joints are the only structural guarantee to resist deformation during the occurrence of differential settlements. Currently, uniform criteria are not available for the design of shear keys in segmental joints, and few physical model tests have been performed to examine the mechanical properties of segmental joints in immersed tunnels. This study investigates the mechanical properties of segmental joints in the immersed tunnel of the Hongkong-Zhuhai-Macao Bridge in China. A series of 1:4.69 large-scale segmental joint model tests were conducted on a settlement platform. Shear force distribution and transfer mechanisms on segmental joints were studied, and allowable differential settlements of segments were determined. In addition, failure features of shear keys and reinforcement measures were propounded. The results of this study are useful for structural safety assessment and further application of segmental type immersed tunnels.
机译:尽管分段单元具有出色的变形和抗裂能力,但在使用阶段,应关注由于自然基础部分上土壤(或基础)的压差和附加(或排出)差压引起的沉管隧道的差异沉降。特别是在浸泡结构后将预应力电缆切断时,分段节上的剪切键是抵抗出现差异沉降时变形的唯一结构保证。目前,对于分段节理中的剪力键设计尚无统一标准,并且几乎没有进行物理模型测试来检查沉管隧道中分段节理的机械性能。本文研究了中国香港-珠海-澳门大桥沉管隧道分段节理的力学性能。在沉降平台上进行了一系列1:4.69的大型分段联合模型测试。研究了节理节点上的剪力分布和传递机制,并确定了节段的允许差异沉降。此外,还提出了剪力键的失效特征和加固措施。这项研究的结果对于分段式沉管隧道的结构安全评估和进一步应用是有用的。

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