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Finite Element Analysis on Lining Structure of Diversion Tunnel in a Hydropower Station

机译:水电站导流隧洞衬砌结构的有限元分析

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Aiming at the high internal and external water pressure tunnels built in unfavorable geological bodies, this study proposes a novel type of composite support structure in which steel plates are poured inside concrete linings. Compared with traditional structures, it has the advantages of higher tensile strength, better crack resistance, and impermeability. Taking the diversion tunnel of a hydropower station as an example, based on linear and non-linear finite element simulations, mechanical properties of the steelconcrete composite lining structure for a hydraulic tunnel in soft surrounding rocks are analyzed. On this basis, the concrete crack control under this supporting condition is verified. Research results can provide a reference for the selection of reasonable steel plate thicknesses and reinforcement types in design.
机译:本研究提出了一种在不利地质体中建立的高内外水压隧道,提出了一种新型的复合载体支撑结构,其中钢板倒入混凝土衬里。 与传统结构相比,抗拉强度较高,抗抗原性和不渗透性更高的优点。 以线性和非线性有限元模拟为例,分析了基于线性和非线性有限元模拟的示例,分析了软围岩中液压隧道的钢耦合复合衬砌结构的机械性能。 在此基础上,验证了该支持条件下的混凝土裂缝控制。 研究结果可为设计提供合理的钢板厚度和加固类型的选择。

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