砂黏复合地层隧道在地表堆载下的响应机制:模型试验与数值模拟
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TU473

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国家自然科学基金国家重大科研仪器研制项目(52027811)


Response Mechanism of Tunnels in Sand-Clay Composite Strata under Surface Surcharge: An Integrated Experimental and Numerical Study
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    摘要:

    摘 要 为解决地表堆载引起的复合地层隧道变形预测难题,揭示砂黏互层条件下隧道的应变响应机制,通过室内缩尺模型试验与ABAQUS数值模拟相结合的方法研究了不同荷载等级下隧道的变形规律及荷载-应变关系。结果表明:随着上部荷载增加,隧道加载点处应变变化最为显著,且随距离增大呈衰减趋势;受土体应力重分布影响,跨中区域出现应变拐点及起拱现象;黏土中隧道变形显著大于砂土,且隧道几何参数对应力分布形态具有显著调控作用。本研究突破了传统均质地层假设,揭示了土体各向异性下荷载传递与隧道变形机制,所建立的荷载-应变方程能有效预测危险点应变演化趋势,可为复杂土体情况下深埋隧道安全维护提供理论依据。

    Abstract:

    [Abstract] In order to solve the difficulty in predicting tunnel deformation induced by surface surcharge in composite strata and reveal the strain response mechanism under sand-clay interbedded conditions, a combination of laboratory reduced-scale model tests and ABAQUS numerical simulations was used to investigate the tunnel deformation patterns and load-strain relationships under different load levels. The results show that the strain variation at the loading point is most significant with the increase of the upper load. An attenuation trend is observed with increasing distance. Strain inflection points and arching phenomena appear in the mid-span region due to soil stress redistribution. The tunnel deformation in clay is significantly greater than that in sand. The stress distribution is significantly regulated by tunnel geometric parameters. It is concluded that the traditional homogeneous strata assumption is overcome. The mechanisms of load transfer and tunnel deformation under soil anisotropy are revealed. The strain evolution trend at critical points is effectively predicted by the established load-strain equation. A theoretical basis is provided for the safety maintenance of deep-buried tunnels in complex soil conditions.

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李兵,李文博,李松霖. 砂黏复合地层隧道在地表堆载下的响应机制:模型试验与数值模拟[J]. 科学技术与工程, 2026, 26(20): 8750-8761.
Li Bing, Li Wenbo, Li Songlin. Response Mechanism of Tunnels in Sand-Clay Composite Strata under Surface Surcharge: An Integrated Experimental and Numerical Study[J]. Science Technology and Engineering,2026,26(20):8750-8761.

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  • 收稿日期:2025-09-25
  • 最后修改日期:2026-04-27
  • 录用日期:2025-12-16
  • 在线发布日期: 2026-07-27
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