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Utilizing Composite Action to Achieve Lining Thickness Efficiency for Sprayed Concrete Lined (SCL) Tunnels

机译:利用复合作用实现衬砌喷射混凝土隧道的衬砌厚度效率

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Composite sprayed concrete lining (SCL), consisting of two layers of permanent sprayed concrete separated by a layer of spray-applied waterproofing membrane, represents the latest development in SCL tunneling, but presents several challenges to designers. This paper aims to address the following issues: (1) how to simulate composite action, (2) behavior of a composite SCL tunnel, and (3) how to utilize composite action to achieve lining thickness efficiency. It firstly sets out the background to the composite SCL concept, and then presents a strategy for numerical investigation. The main part of the paper is the presentation and discussion of the simulation results, focusing on the lining deformation, load sharing and the safety margin of both linings. Interface stresses are also examined. It is found that significant secondary lining thickness reduction may be achieved by utilizing composite action. Challenges for the design of composite SCL tunnels are briefly discussed at the end.
机译:复合喷涂混凝土衬砌(SCL)由两层永久喷涂混凝土组成,并由一层喷涂防水膜隔开,代表了SCL隧道技术的最新发展,但对设计人员提出了一些挑战。本文旨在解决以下问题:(1)如何模拟复合作用;(2)复合SCL隧道的行为;(3)如何利用复合作用来实现衬砌厚度效率。首先阐述了复合SCL概念的背景,然后提出了数值研究的策略。本文的主要部分是仿真结果的介绍和讨论,重点是衬砌的变形,载荷分担和两个衬砌的安全裕度。还检查了界面应力。已经发现,通过利用复合作用可以实现显着的二次衬里厚度减小。最后简要讨论了复合SCL隧道的设计挑战。

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