ZHANG Yong, HE Laping, LONG Zhao and LIU Yi Jun, . 2023. Application of circular reinforced concrete purlins in the small-size deep foundation pit in the loess area. DRILLING ENGINEERING, 50(2): 100-108. doi: 10.12143/j.ztgc.2023.02.014
Citation: |
ZHANG Yong, HE Laping, LONG Zhao and LIU Yi Jun, . 2023. Application of circular reinforced concrete purlins in the small-size deep foundation pit in the loess area. DRILLING ENGINEERING, 50(2): 100-108. doi: 10.12143/j.ztgc.2023.02.014
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Application of circular reinforced concrete purlins in the small-size deep foundation pit in the loess area
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Abstract
In the case of a typical circular deep foundation pit with a diameter of 10.0m and a depth of 24.50m in the eastern suburb of Xi’an, in order to solve the difficulties in excavating a pipe jacking well with a small size and a large depth in the loess area collapsible under overburden pressure, including the extremely complex surrounding environment, close proximity of the working well to multi-storey buildings which are extremely sensitive to deformation, no anchor cable construction space, the circular reinforced concrete was used to resist the earth pressure instead of the traditional inner support, which not only eliminated disturbance on the excavation in the narrow space, but also controlled the deformation of the enclosure structure and protected the safety of the surrounding environment. Several engineering practices show that in a circular deep foundation pit with a diameter of less than 12m and a depth of no more than 25m, the designed system has low cost, small deformation with the enclosure structure, safe and reliable surrounding environment, no anchor rod (cable) remaining in the soil, and no impact on the later development and utilization of the adjacent underground space, which provides reference for excavating similar deep foundation pits in the loess area collapsible under overburden pressure.
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References
[1]
|
龚晓南,侯伟生.深基坑设计施工手册(第二版)[M].北京:中国建筑工业出版社,2018.GONG Xiaonan, HOU Weisheng. Deep Foundation Pit Design and Construction Manual (Second Edition)[M]. Beijing: China Architecture & Building Press, 2018.
Google Scholar
|
[2] |
[2] 李森林,葛玉祥.圆形基坑排桩环梁内撑弹性支点刚度系数算法[C]//第八届深基础工程发展论坛论文集.北京:知识产权出版社,2018:26-31.
Google Scholar
LI Senlin, GE Yuxiang. Algorithm for elastic fulcrum stiffness coefficient of circular foundation pit pile ring beam internal support[C]//Proceedings of the 8th China Construction Industry Press Deep Foundation Engineering Development Forum. Beijing: Intellectual Property Publishing House, 2018:26-31.
Google Scholar
|
[3] |
[3] 邵晨晨.复杂地质条件和敏感环境中基坑设计实践及关键技术[J].钻探工程,2021,48(6):102-108.
Google Scholar
SHAO Chenchen. Design practice and key technology for the foundation pit in complex geology and sensitive environments[J]. Drilling Engineering, 2021,48(6):102-108.
Google Scholar
|
[4] |
[4] 陈正汉.非饱和土与特殊土近期研究进展[C]//岩土春秋——中国土木工程学会土力学与岩土工程分会成立六十周年纪念文集.北京:清华大学出版社,2019:179-185.
Google Scholar
CHEN Zhenghan. Recent research progress of unsaturated soil and special soil[C]//Rock and Soil Spring and Autumn—Festschrift of the 60th Anniversary of the Soil Mechanics and Geotechnical Engineering Branch of the Chinese Society of Civil Engineering, Beijing: Tsinghua University Press, 2019:179-185.
Google Scholar
|
[5] |
[5] 张嘎,王刚,尹振宇,等.土的基本特性及本构关系[C]//第十三届全国土力学及岩石工程学术大会论文集.北京:清华大学出版社,2019:2-3.
Google Scholar
ZHANG Ga, WANG Gang, YIN Zhenyu, et al. Basic characteristics and constitutive relation of soil[C]//Proceedings of the 13th National Conference on Soil Mechanics and Rock Engineering. Beijing: Tsinghua University Press, 2019:2-3.
Google Scholar
|
[6] |
[6] 王沈力,郭斌.西安市幸福林带建设工程岩土工程勘察报告[R].甘肃中建市政工程勘察设计研究院,2017:6.WANG Shenli, GUO Bin. Geotechnical investigation report of Xi’an happiness forest belt construction project[R]. Gansu CSCEC Municipal Englneering Inverstigation and Design Institute, 2017:6.
Google Scholar
|
[7] |
[7] 张家国,肖世国,邹力,等.砂卵石地层圆形深基坑排桩支护结构受力特征[J].地下空间与工程学报,2015,11(6):1603-1610.
Google Scholar
ZHANG Jiaguo, XIAO Shiguo, ZOU Li, et al. Mechanical characteristics of row piles supporting structure of circular deep foundation pit in sandy gravel stratum[J]. Journal of Underground Space and Engineering, 2015,11(6):1603-1610.
Google Scholar
|
[8] |
[8] 陆新征,宋二祥,吉林,等.某特深基坑考虑支护结构与土体共同作用的三维有限元分析[J].岩土工程学报,2003,25(4):488-491.
Google Scholar
LU Xinzheng, SONG Erxiang, JI Lin, et al. Three dimensional finite element analysis of an extra deep foundation pit considering the interaction between retaining structure and soil[J]. Journal of Geotechnical Engineering, 2003,25(4):488-491.
Google Scholar
|
[9] |
[9] 王洪新.圆形基坑围护结构稳定性分析[J].地下空间与工程学报,2011,7(S2):1653-1659.
Google Scholar
WANG Hongxin. Stability analysis of circular foundation pit retaining structure[J]. Journal of Underground Space and Engineering, 2011,7(S2):1653-1659.
Google Scholar
|
[10] |
[10] GB 50497—2019,建筑基坑工程监测技术标准[S].GB 50497—2019, Technical standard for monitoring of building excavation engineering[S].
Google Scholar
|
[11] |
[11] JGJ 120—2012,建筑基坑支护技术规程[S].JGJ 120—2012, Technical specification for retaining and protection of building foundation excavations[S].
Google Scholar
|
[12] |
[12] JGJ 167—2009,湿陷性黄土地区建筑基坑工程安全技术规程[S].JGJ 167—2009, Technical specifications for safe retaining and protection of building foundation excavation engineering in collapsible loess regions[S].
Google Scholar
|
[13] |
[13] DBJ 61/T 105—2015,建筑基坑支护技术与安全规程[S].DBJ 61/T 105—2015, Specification of technology and safety for retaining and protection of building foundation excavations[S].
Google Scholar
|
[14] |
[14] 李毅,仲海蛟.北京世园小镇接待中心基坑监测分析[J].钻探工程,2021,48(5):113-118.
Google Scholar
LI Yi, ZHONG Haijiao. Foundation pit monitoring and analysis for Beijing Shiyuan Town Reception Center[J]. Drilling Engineering, 2021,48(5):113-118.
Google Scholar
|
[15] |
[15] 李家贵,陈正汉,黄雪峰,等.原状非饱和Q3黄土的土压力原位测试和强度特性研究[J].岩土力学,2010,31(2):433-440.
Google Scholar
LI Jiagui, CHEN Zhenghan, HUANG Xuefeng, et al. In-site test on earth pressure and saturating collapse test for unsaturated loess Q3 on high slope[J]. Rock and soil Mechanics, 2010,31(2):433-440.
Google Scholar
|
[16] |
[16] 李广信,张丙印,于玉贞.土力学(第2版)[M].北京:清华大学出版社,2013:223-241.
Google Scholar
LI Guangxin, ZHANG Bingyin, YU Yuzhen. Soil Mechanics (2nd Edition)[M]. Beijing: Tsinghua University Press, 2013:223-241.
Google Scholar
|
[17] |
[17] 杨光华.深基坑支护结构的实用计算方法及其应用[M].北京:地质出版社,2004:15,26.YANG Guanghua. Practical Calculation Method and Application of Deep Foundation Pit Supporting Structure[M]. Beijing: Geological Publishing House, 2004:15,26.
Google Scholar
|
[18] |
[18] 施文华.深基坑桩锚支护设计中的几个问题[J].建筑技术,1993(20):3.SHI Wenhua. Some problems in the design of pile anchor support for deep foundation pit[J]. Building Technology,1993(20):3.
Google Scholar
|
[19] |
[19] 龚晓南,宋二祥,郭红仙,等.基坑工程实例7[M].北京:中国建筑工业出版社,2018:46.GONG Xiaonan, SONG Erxiang, GUO Hongxian, et al. Example of Foundation Pit Engineering 7[M]. Beijing: China Architecture & Building Press, 2018:46.
Google Scholar
|
-
-
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