[an error occurred while processing this directive]
 
       首 页  |  期刊介绍  |  编委会  |  投稿指南  |  期刊订阅  |  广告合作  |  留言板  |  联系我们 |  English
现代隧道技术 2025, Vol. 62 Issue (5) :43-    DOI:
理论研究与探讨 最新目录 | 下期目录 | 过刊浏览 | 高级检索 << [an error occurred while processing this directive] | [an error occurred while processing this directive] >>
地下水和空间土拱效应作用下深大圆形基坑非极限主动土压力分布研究
(1.中山大学航空航天学院,深圳 518107; 2.隧道工程灾变防控与智能建养全国重点实验室,广州 510275;
3.广东省海洋土木工程重点实验室,中山大学土木工程学院,广州 510275; 4.广州地铁建设管理有限公司,
广州 510000; 5.中铁三局集团广东建设工程有限公司,广州 510000)
Study on Non-limit Active Earth Pressure Distribution of Deep Large Circular Excavations Considering Groundwater and Spatial Soil Arching Effects
(1. School of Aeronautics and Astronautics, Sun Yat-Sen University, Shenzhen 518107; 2. State Key Laboratory for Tunnel
Engineering, Guangzhou 510275; 3. Guangdong Key Laboratory of Marine Civil Engineering, School of Civil Engineering,
Sun Yat-sen University, Guangzhou 510275; 4. Guangzhou Metro Construction Management Co., Ltd., Guangzhou 510000; 
5. Guangdong Construction Engineering Co.Ltd of China Railway Third Group, Guangzhou 510000)
Download: PDF (3525KB)   HTML (1KB)   Export: BibTeX or EndNote (RIS)      Supporting Info
摘要 在深大圆形基坑应用日益广泛的背景下,发展能够综合考虑复杂因素的土压力计算方法,对于提升设计的精细化和科学化水平具有重要的工程实践价值。鉴于此,提出一种考虑地下水作用、空间拱效应及墙体位移模式的圆形基坑非极限主动土压力求解方法,并通过工程实例验证了该方法的适用性与有效性。在此基础上,进一步分析土体参数、墙体位移模式、地面超载及地下水位对土压力分布的影响规律。研究结果表明:圆形基坑的土压力随深度的增加呈先增加后减小的趋势,受空间拱效应影响,其土压力显著小于传统朗肯土压力计算值;土压力与土体黏聚力、内摩擦角均呈负相关关系;邻近地表超载会在墙体上方产生附加土压力,该附加土压力随埋深增加而减小;地下水位越低、墙体位移量越大,位移区域越广,主动土压力的衰减就越显著。
Service
把本文推荐给朋友
加入我的书架
加入引用管理器
Email Alert
RSS
作者相关文章
梁 禹1
2
3 范晓锋3 黄林冲2
3 周忠海4 孟 涛5
关键词圆形基坑   土拱效应   地下水作用   非极限土压力     
Abstract: With the increasing application of deep and large circular excavations, developing an earth pressure evaluation method that comprehensively accounts for complex influencing factors is of significant engineering value for enhancing design accuracy and scientific reliability. In this study, a non-limit active earth pressure calculation method for circular excavations is proposed, which incorporates groundwater effects, spatial arching effects, and wall displacement patterns. The applicability and effectiveness of the method are validated through an engineering case study. Furthermore, the influences of soil parameters, wall displacement patterns, surface surcharge, and groundwater level on earth pressure distribution are investigated. The results show that the earth pressure in circular excavations first increases and then decreases with depth, and due to spatial arching effects, it is significantly lower than the traditional Rankine earth pressure estimation. The earth pressure is negatively correlated with soil cohesion and internal friction angle. Surface surcharge generates additional earth pressure on the upper portion of the wall, which decreases with depth. A lower groundwater level, larger wall displacement magnitude, and wider displacement zone result in a more significant reduction in active earth pressure.
KeywordsCircular excavation,   Soil arching effect,   Groundwater influence,   Non-limit earth pressure     
基金资助:国家自然科学基金(52378427);广东省基础与应用基础研究基金(2024A1515012623);深圳市科技计划项目可持续发展专项(KCXFZ20201221173207020).
作者简介: 梁 禹(1986-),男,博士,副教授,主要从事地下工程与地层相互力学作用的研究与教学工作,E-mail:liangyu25@mail.sysu.edu.cn.
引用本文:   
梁 禹1, 2, 3 范晓锋3 黄林冲2等 .地下水和空间土拱效应作用下深大圆形基坑非极限主动土压力分布研究[J]  现代隧道技术, 2025,V62(5): 43-
LIANG Yu1, 2, 3 FAN Xiaofeng3 HUANG Linchong2 etc .Study on Non-limit Active Earth Pressure Distribution of Deep Large Circular Excavations Considering Groundwater and Spatial Soil Arching Effects[J]  MODERN TUNNELLING TECHNOLOGY, 2025,V62(5): 43-
链接本文:  
http://www.xdsdjs.com/CN/      或     http://www.xdsdjs.com/CN/Y2025/V62/I5/43
 
没有本文参考文献
Copyright 2010 by 现代隧道技术