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Numerical Simulation of Bedrock Sagging Sinkholes in Strain-Softening Rock Induced by Embankment Construction

机译:路堤施工引起的应变软化岩石基岩下陷孔的数值模拟

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摘要

A bedrock sagging sinkhole occurred in Jiangxi Province of China when constructing the Changli freeway above shallow karst caves. It was chosen as a case to investigate the failure mechanism and potential evolution. The in situ stress of the study area was measured and numerically reproduced. The Hoek-Brown strength parameters were obtained by laboratory tests. A strain-softening constitutive model was established according to the strain-softening behaviour exhibited by the specimens in the triaxial test. The stress-strain curves of the specimens were reproduced by numerical methods. Then, bedrock sagging sinkholes in strain-softening rock induced by embankment construction were simulated. The occurrence of the strain-softening zone and its transition to the residual zone were observed and classified into four stages. The stress paths of the four stages were analysed. Interestingly, in this case, the supports at both ends of the bedrock began to yield from the top and extended downward, while the midspan position began to yield from the bottom and extended upward, and the reasons for yielding were related to tension. Further analysis found that the failure mode was basically consistent with the size and direction of the bending moment. In fact, this failure mode was quite similar to a fixed supported beam. Then, the feasibility of calculating the stability of karst caves based on beam assumptions was discussed. Finally, potential evolution of the bedrock sagging sinkhole was discussed.
机译:当在浅岩溶洞穴上方建造昌黎高速公路时,在中国江西发生了基岩下陷的下沉。选择它作为研究故障机理和潜在发展的案例。测量研究区域的原位应力并进行数值模拟。 Hoek-Brown强度参数是通过实验室测试获得的。根据三轴试验中试样的应变软化行为,建立了应变软化本构模型。用数值方法再现了试样的应力-应变曲线。然后,模拟了路堤施工引起的应变软化岩石中的基岩下陷凹陷。观察到应变软化区的发生及其向残余区的过渡,并将其分为四个阶段。分析了四个阶段的应力路径。有趣的是,在这种情况下,基岩两端的支撑物开始从顶部屈服并向下延伸,而中跨位置开始从底部屈服并向上延伸,并且屈服的原因与张力有关。进一步分析发现,破坏模式与弯矩的大小和方向基本一致。实际上,这种失效模式与固定支撑梁非常相似。然后,讨论了基于梁假设计算岩溶洞穴稳定性的可行性。最后,讨论了基岩下陷沉陷的潜在演化。

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  • 来源
    《Advances in civil engineering》 |2019年第3期|9426029.1-9426029.19|共19页
  • 作者

    Zhang Zhen; Chen Zhongda;

  • 作者单位

    Changan Univ, Minist Educ, Key Lab Special Area Highway Engn, Xian 710064, Shaanxi, Peoples R China;

    Changan Univ, Minist Educ, Key Lab Special Area Highway Engn, Xian 710064, Shaanxi, Peoples R China;

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