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Analysis of fracture propagation in a rock mass surrounding a tunnel under high internal pressure by the element-free Galerkin method

机译:无内力伽辽金法分析高内部压力下隧道周围岩体的裂隙扩展

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摘要

Fractures developed around high pressurized gas or air storage tunnels can progressively extend to the ground surface, eventually leading to an uplift failure. A tool reasonably reproducing the failure patterns is necessary for stability assessment. In this study, a numerical method based on the element-free Galerkin (EFG) method with a cohesive crack model is developed to simulate fracture propagation patterns in the rock mass around a tunnel under high internal pressure. A series of physical model tests was also conducted to validate the reliability of the developed method. A qualitative agreement between physical model tests and numerical results can be obtained. The in situ stress ratio, k, has a strong influence on both the position of crack initiation and the propagation direction. The numerical analyses were extended to full-scale problems. Numerical tests were performed to investigate the prime influencing factors on the failure patterns of a high pressurized gas circular tunnel with varying parameters. The results suggest that initial in situ stress conditions with a high k (larger than 1) is favorable for construction of pressurized gas or air storage tunnels.
机译:高压气体或空气存储隧道周围形成的裂缝会逐渐延伸到地面,最终导致隆升失败。合理地再现故障模式的工具对于稳定性评估是必需的。在这项研究中,开发了一种基于无内聚Galerkin(EFG)方法和内聚裂纹模型的数值方法,以模拟高内压下隧道周围岩体中的裂缝扩展模式。还进行了一系列物理模型测试,以验证所开发方法的可靠性。可以得到物理模型测试和数值结果之间的定性一致性。现场应力比k对裂纹萌生的位置和传播方向都有很大的影响。数值分析扩展到全面问题。进行了数值测试,以研究影响参数变化的高压气体圆形隧道破坏模式的主要影响因素。结果表明,具有较高k(大于1)的初始原位应力条件有利于建设加压气体或储气隧道。

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  • 来源
    《Computers and Geotechnics》 |2014年第1期|78-90|共13页
  • 作者单位

    Civil Engineering Department, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Thung Khru District, Bangkok, Thailand;

    Civil Engineering Department, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Thung Khru District, Bangkok, Thailand;

    Bureau of Planning, Department of Rural Roads, Ministry of Transport, Thailand;

    Civil Engineering Department, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Thung Khru District, Bangkok, Thailand;

    School of Civil Engineering and Technology, Sirindhorn International Institute of Technology, Thammasat University, Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fracture propagation; Tunnel in rock; High internal pressure; EFG;

    机译:断裂扩展;岩石隧道内部压力高;EFG;

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