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Structural Design of Composite Shell Linings

机译:复合材料外壳衬里的结构设计

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A composite shell lining typically consists of an outer permanent sprayed concrete shell, a water proofing layer and an inner sprayed or cast concrete shell. Composite shell linings become more and more popular and have been built recently on large scale infrastructure projects. Surprisingly there is very little published literature on the actual structural design of composite linings. As a consequence there is a lack of common understanding on how to design a composite lining structure. Composite action of the outer shell (primary lining) initially carrying short term ground loads and the "unloaded" inner shell (secondary lining) require nonlinear concrete modelling to be able to assess the bearing capacity of the composite lining structure adequately. The composite action of the waterproofing membrane and the inner and outer shells can be considered either by simplified closed form solutions or by numerical models. Strength and stiffness parameters of membrane and concrete govern interaction of inner and outer shell. This paper should contribute to understanding composite lining behaviour with focus on the bearing capacity at limit state by taking into account the actual loading history. Possible ways and concepts on how to deal with these topics are presented, however a broader discussion on limit states of the composite lining materials - also in the long term will be required to come to an agreement on composite lining design methodology.
机译:复合材料外壳衬里通常由外部永久喷涂混凝土外壳,防水层和内部喷涂或浇铸混凝土外壳组成。复合材料外壳衬里变得越来越流行,并且最近已在大型基础设施项目上建造。令人惊讶的是,关于复合衬砌的实际结构设计的文献很少。结果,在如何设计复合衬里结构方面缺乏共识。最初承受短期地面载荷的外壳(主衬板)和“未加载”内壳(辅助衬板)的复合作用需要非线性混凝土建模,以便能够充分评估复合衬板结构的承载力。防水膜与内壳和外壳的复合作用可以通过简化的封闭形式解决方案或通过数值模型来考虑。膜和混凝土的强度和刚度参数决定着内壳和外壳的相互作用。通过考虑实际的载荷历史,本文应有助于理解复合衬砌的性能,重点是极限状态下的承载力。提出了有关如何处理这些主题的可能方式和概念,但是,就复合衬里设计方法达成共识,从长远来看,还需要对复合衬里材料的极限状态进行更广泛的讨论。

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