考虑堆石料软化的三维坝坡优化动力稳定分析
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大连理工大学建设工程学院

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国家自然科学基金(52479094, 52379117, 52279096, 52279125);国家重点研发项目(2023YFC3011400);辽宁省科技计划联合计划(2023JH2/101700339)


Optimized dynamic stability analysis of three-dimensional dam slope considering strain-softening of rockfill
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School of Infrastructure Engineering, Dalian University of Technology

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China National Natural Science Foundation (Grant Nos. 52479094, 52379117, 52279096, 52279125); National Key R&D Program of China (2023YFC3011400); Liaoning Province science and technology plan joint plan (2023JH2/101700339)

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    摘要:

    对于高土石坝的稳定分析大多局限于二维情况,缺少合适的三维稳定分析方法。此外,地震作用下坝体堆石料容易出现应变软化现象,影响大坝的抗震性能。因此有必要发展能考虑软化效应的高土石坝三维动力稳定分析方法。首先基于有限元滑面应力法,结合优化的号角形三维破坏机制提出了一种高土石坝三维稳定分析方法。然后,对堆石料三轴试验结果进行整理得到了峰后强度与峰后剪应变的关系以考虑堆石料软化效应的影响。最后,将所建立的稳定分析框架应用于三维高土石坝的静动力稳定分析,并与二维分析结果进行了对比。结果表明:考虑与不考虑软化效应的滑移量结果差异较大,且这种差异随累积滑移量的增大而增大;相较于三维稳定分析,基于累积滑移量的二维稳定分析容易高估坝坡的抗震稳定性.

    Abstract:

    The stability analysis of high earth-rockfill dam is mostly limited to two-dimensional situation, and there is no suitable three-dimensional stability analysis method. In addition, the rockfill material of earth-rockfill dam is prone to strain softening under strong earthquakes, which affects the seismic performance of the dam. It is necessary to develop a three-dimensional stability analysis method for high dams that can take the softening effect into account. Firstly, a three-dimensional static and dynamic stability analysis method for high earth-rock dams is proposed based on the finite element sliding surface stress method combined with the optimized horn-shaped three-dimensional damage mechanism. Then, the relationship between post-peak strength and post-peak shear strain is obtained by processing the triaxial test results of rockfill in order to consider the impact of the softening effect of the rockfill material. Finally, the developed stability analysis framework is applied to analysis the static and dynamic stability of three-dimensional high earth-rockfill dam, and is compared with the two-dimensional case. The results show that the slippage with and without considering the softening effect differ significantly, and this difference increases as the cumulative slippage increases. Compared with the three-dimensional stability analysis, the two-dimensional stability analysis based on cumulative slippage tends to underestimate the seismic stability of the dam slope.

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  • 收稿日期:2025-02-28
  • 最后修改日期:2025-04-17
  • 录用日期:2025-06-01
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