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Cyclic bending performance of joint on precast composite hollow RC for submerged floating tunnels

机译:浸没式浮动隧道预制复合空心RC关节循环弯曲性能

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摘要

In case of a submerged floating tunnel (SFT), which is difficult to cast in-site underwater con-struction, it is modularized on land and then assembled them in the field. Therefore, it is influ-ential to investigate the structural performance of the joints between the modules. A concept of the steel-concrete composite hollow in the SFT, which stably maintains the joints, has been proposed by applying prestressing method to resist various external loads. In this study, the bending behavior of module joints was experimentally analyzed to evaluate the safety for the bending deformation that is dominant in SFT. Test results show that there is a difference at the module joint portion in the performance depending on whether or not the inner steel tube is connected. The bending stiffness of the module joints in the SFT was very similar but there was a difference in strength. The maximum strength was increased from 700 kN to 1200 kN when the inner tube was connected, and the residual displacement was increased from 15 mm to 40 mm. As a result, in the design of the module joint, depending on the purpose of SFT, it is possible to consider both methods which is allowing the ductility behavior of internal tube and controlling the tight connection. Moreover, the failure criterion of the bending behavior of the module joint can be selected as the maximum load or deformation limit.
机译:在潜水隧道(SFT)的情况下,这难以浇铸水下的水平结构,它在陆地上模块化,然后在该领域组装。因此,它是调查模块之间关节的结构性能的影响。通过施加预应力方法来抵抗各种外部载荷,提出了稳定地保持关节的SFT中的钢混凝土复合材料的概念。在这项研究中,模块接头的弯曲行为进行了实验分析,以评估SFT中占据优势的弯曲变形的安全性。测试结果表明,根据内钢管是否连接,模块接头部分在性能中存在差异。 SFT中模块接头的弯曲刚度非常相似,但强度差异。当连接内管时,最大强度从700 kN增加到1200kn,并且残余位移从15mm到40mm增加。结果,在模块接头的设计中,取决于SFT的目的,可以考虑两种方法,该方法允许内管的延展性并控制紧密连接。此外,可以选择模块接头的弯曲行为的故障标准作为最大负载或变形极限。

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