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首页> 外文期刊>KSCE journal of civil engineering >Effects of Tunnel Shapes in Structural and Hydraulic Interaction
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Effects of Tunnel Shapes in Structural and Hydraulic Interaction

机译:隧道形状对结构与水力相互作用的影响

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摘要

Determining tunnel shapes requires the consideration of various factors such as ground and groundwater conditions, usage, economic efficiency, and constructability. In the case of particularly high water pressure environments, a circular tunnel is generally adopted to avoid the generation of stress concentration in the lining. However, because the circular cross section is difficult to construct and is not space efficient, a horseshoe- or egg-shaped cross section is usually employed. The effect of pore water pressure on tunnel linings has not been clearly identified yet. Furthermore, there are no established design guidelines for determining water pressure acting on the lining. In this study, the water pressure development mechanism and the effect of tunnel cross section is investigated using a coupled numerical analysis. It is found that the mode of water pressure and its effect on the lining are strongly dependent on tunnel shapes and hydraulic boundary conditions. Based on the analysis results a method for evaluating pore water pressure on the lining is proposed.
机译:确定隧道的形状需要考虑各种因素,例如地下水和地下水的状况,用途,经济效率和可施工性。在水压特别高的环境中,通常采用圆形隧道以避免在衬里产生应力集中。然而,由于圆形截面难以构造且空间效率低,因此通常采用马蹄形或卵形截面。尚未明确确定孔隙水压力对隧道衬砌的影响。而且,没有确定作用在衬里上的水压的既定设计准则。在这项研究中,使用耦合数值分析来研究水压发展机理和隧道横截面的影响。发现水压的模式及其对衬砌的影响在很大程度上取决于隧道的形状和水力边界条件。基于分析结果,提出了一种评价衬砌孔隙水压力的方法。

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