兰州理工大学学报 ›› 2026, Vol. 52 ›› Issue (4): 122-129.doi: 10.13295/j.cnki.issn1673-5196.2026.04.014

• 建筑科学 • 上一篇    下一篇

基于能量法的窄型基坑嵌固稳定性计算

王金科*1, 张兆2, 苏天涛2,3   

  1. 1.甘肃建投建设有限公司,甘肃 兰州 730050;
    2.兰州理工大学 土木与水利工程学院,甘肃 兰州 730050;
    3.兰州工业学院 土木工程学院,甘肃 兰州 730050
  • 收稿日期:2023-01-13 出版日期:2026-08-28 发布日期:2026-09-03
  • 通讯作者: 王金科(1983-),男,甘肃宁县人,高级工程师.Email:wangjinke1983@sina.com
  • 基金资助:
    甘肃省教育厅科学研究项目资助(2025QB-100,2026A-230)

Calculation of embedded stability of narrow foundation pit based on energy method

WANG Jin-ke1, ZHANG Zhao2, SU Tian-tao2,3   

  1. 1. Gansu Jiantou Construction Co., Ltd., Lanzhou 730050, China;
    2. School of Civil and Hydrulic Engineering, Lanzhou University of Technology, Lanzhou 730050, China;
    3. School of Civil Engineering, Lanzhou Institute of Technology, Lanzhou 730050, China
  • Received:2023-01-13 Online:2026-08-28 Published:2026-09-03

摘要: 针对基坑宽度对围护结构嵌固稳定性的影响问题,将滑动面假定为直线与对数螺旋线状组合形式,按照对数螺旋线滑移面能否在基坑宽度内完全展开,将基坑定量地划分为普通基坑与窄型基坑.运用能量法分别推导出普通基坑与窄型基坑主、被动土压力对围护结构最下道支撑点的力矩,进而推导出考虑基坑宽度的嵌固稳定性安全系数计算公式,并开展对比验证及参数分析.结果表明:临界宽度既受围护结构布置形式影响又受土体参数影响;考虑基坑宽度的新嵌固稳定性计算方法在普通基坑范畴与现行规程计算结果较为接近,但对于窄型基坑,二者相差较大,基坑宽度越小差异越大;新方法得到的嵌固稳定性安全系数随着最下道支撑点距坑底距离的增大而减小,随着土体粘聚力、内摩擦角和土体与围护结构间摩擦角的增大而增大.

关键词: 窄型基坑, 嵌固稳定性, 能量法, 对数螺旋线滑移面

Abstract: To investigate the influence of excavation width on the embedment stability of retaining structures, the slip surface is assumed to be a combination of a straight line and a logarithmic spiral. According to whether the logarithmic spiral slip surface can fully develop within the excavation width, excavations are quantitatively classified into ordinary excavations and narrow excavations. The energy method is employed to derive the moments of active and passive earth pressures about the lowest support point of the retaining structure for both ordinary and narrow excavations, respectively. Based on these derivations, a calculation formula for the embedment stability factor of safety that accounts for excavation width is established, followed by comparative verification and parametric analyses. The results indicate that the critical width is influenced by both the layout of the retaining structure and the soil parameters. The proposed method, which incorporates the excavation width, yields results comparable to those of current code specifications for ordinary excavations; however, for narrow excavations, significant discrepancies are observed, and the difference becomes more pronounced as the excavation width decreases. Furthermore, the factor of safety obtained by the new method decreases with increasing distance from the lowest support point to the excavation bottom, while it increases with increasing soil cohesion, internal friction angle, and friction angle between the soil and the retaining structure.

Key words: narrow foundation pit, embedded stability, energy method, logarithmic spiral slip surface

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