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Hydro-mechanical interaction of reinforced concrete lining in hydraulic pressure tunnel

机译:钢筋混凝土衬砌液压隧道钢筋混凝土衬砌的水力机械相互作用

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摘要

The reinforced concrete lining of hydraulic pressure tunnels tends to crack under high inner water pressure (IWP), which results in the inner water exosmosis along cracks and involves typical hydro-mechanical interaction. This study aims at the development, validation and application of an indirect-coupled method to simulate the lining cracking process. Based on the concrete damage plasticity (CDP) model, the utility routine GETVRM and the user subroutine USDFLD in the finite element code ABAQUS is employed to calculate and adjust the secondary hydraulic conductivity according to the material damage and the plastic volume strain. The friction-contact method (FCM) is introduced to track the lining-rock interface behavior. Compared with the traditional node-shared method (NSM) model, the FCM model is more feasible to simulate the lining cracking process. The number of cracks and the reinforcement stress can be significantly reduced, which matches well with the observed results in engineering practices. Moreover, the damage evolution of reinforced concrete lining can be effectively slowed down. This numerical method provides an insight into the cracking process of reinforced concrete lining in hydraulic pressure tunnels.
机译:液压隧道的钢筋混凝土衬砌趋于在高内部水压(IWP)下裂缝,从而导致沿着裂缝的内部水分渗透,涉及典型的水力机械相互作用。本研究旨在采用间接耦合方法的开发,验证和应用来模拟衬里裂解过程。基于混凝土损伤塑性(CDP)模型,采用有限元码中的实用程序常规GETVRM和用户子程序USDFLD根据材料损坏和塑料体积应变来计算和调节次级液压导电性。引入摩擦接触方法(FCM)以跟踪衬砌岩石界面行为。与传统的节点共享方法(NSM)模型相比,FCM模型更加可行,可以模拟衬里开裂过程。可以显着降低裂缝和增强应力的数量,这与观察到的工程实践结果相匹配。此外,钢筋混凝土衬砌的损伤演化可以有效地减慢。该数值方法提供了进入液压隧道钢筋混凝土衬砌裂缝过程的洞察。

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