›› 2009, Vol. 30 ›› Issue (4): 1057-1062.

• Geotechnical Engineering • Previous Articles     Next Articles

Field study of bearing behavior of pile-net composite foundation

LIAN Feng 1,2,GONG Xiao-nan1,CUI Shi-cai3,LIU Ji-fu4   

  1. 1. College of Civil Engineering, Zhejiang University, Hangzhou 310027, China; 2. Shandong Provincial Academy of Building Research, Jinan 250014, China; 3. College of Civil Engineering, Liaocheng University, Liaocheng, 252000, China; 4. Geotechnical Branch of Hangsheng Co. Ltd. of Guangdong Province , Guangzhou 510230, China
  • Received:2007-10-11 Online:2009-04-10 Published:2011-01-30

Abstract:

Pile-net composite foundation is a new kind of soft soil treatment method developed in recent years. Through the deformation compatibleness, the respective effects of pile, soil and net are initiated to control the residual settlement or differential settlement. According to the kind of pile, two experimental section are designed to make comparison to investigate the working mechanism of pile-net composite foundation under embankment loads, and analyze its settlement, load transfer, pile-soil stress ratio and internal force of net etc. The results show that: the pile-net composite foundation could reduce the settlement effectively; the load transfer ability of geogrid is better than that of soil arch; the maximum strain of geogrid, which occurs at the edge of pile cap, is just 1 %, the minimum strain occurs at the midst of two piles. The results provide the basis for the theoretical research and optimum design of pile-net composite foundation.

Key words: foundation treatment, embankment loads, pile-net composite foundation, bearing behavior

CLC Number: 

  • TU 473.1
[1] HUANG Yu-hua, XU Lin-rong, ZHOU Jun-jie, CAI Yu, . Calculation of pile-soil stress in pile-net composite foundation based on improved Terzarghi method [J]. Rock and Soil Mechanics, 2020, 41(2): 667-675.
[2] QIN Yu-lan, ZOU Xin-jun, CAO Xiong. Internal forces and deformations of a single pile in uniform sand under combined action of horizontal harmonic load and torque [J]. Rock and Soil Mechanics, 2020, 41(1): 147-156.
[3] WANG Qin-ke, MA Jian-lin, HU Zhong-bo, WANG Bin, . Field tests on bearing behaviors of uplift piles in soft rock with shallow overburden [J]. Rock and Soil Mechanics, 2019, 40(4): 1498-1506.
[4] WANG Jia-quan, XU Liang-jie, HUANG Shi-bin, LIU Zheng-quan. Bearing capacity analysis of geogrid reinforced abutment retaining wall under dynamic load [J]. Rock and Soil Mechanics, 2019, 40(11): 4220-4228.
[5] XU Jiang, GONG Wei-ming, ZHANG Qi, DAI Guo-liang, HUO Shao-lei, YANG Chao ,. Numerical simulation and field test study on vertical bearing behavior of large diameter steel of inclined piles [J]. , 2017, 38(8): 2434-2440.
[6] YUE Hao-miao, HUANG Jian-ming, WEN Tao, MI Hai-zhen,. Experimental study of foundation treatment of sulphate saline sandy soil using heavy cover replacement technique [J]. , 2017, 38(2): 471-478.
[7] YAO Jian-ping , CAI De-gou , ZHU Jian , WANG Li-wei,. Research on post-grouting bored pile load-bearing characteristics [J]. , 2015, 36(S1): 513-517.
[8] CHANG Lin-yue, WANG Wei-dong, WU Jiang-bin. Numerical simulation analysis of uplift behavior of enlarged base piles based on uplift ultimate bearing capacity tests [J]. , 2015, 36(S1): 657-663.
[9] LIU Jin-chao , XIONG Gen , ZHU Bin , YING Pan-pan,. Bearing capacity and deflection behaviors of large diameter monopile foundations in sand seabed [J]. , 2015, 36(2): 591-599.
[10] YANG Xiao-hui , ZHU Yan-peng , GUO Nan , HUANG Xue-feng , . Internal force test research on pile-anchor retaining structure of metro station deep foundation [J]. , 2014, 35(S2): 185-197.
[11] ZHANG Yong , ZHAO Yun-yun , GAO Wen-long . Experimental study of foundation treatment with vacuum well-point dewatering [J]. , 2014, 35(9): 2667-2672.
[12] LUO Yong , LI Chun-feng , XING Hao-feng,. Research on bearing behaviors of large-diameter rock-socketed piles through distributed optical fiber sensing technology [J]. , 2014, 35(5): 1406-1412.
[13] LIN Chun-jin ,ZHANG Qian-qing ,LIANG Fa-yun ,ZHANG Qian ,LIU Hong-liang,. Analysis of bearing behavior of a single pile considering progressive failure of pile-soil system [J]. , 2014, 35(4): 1131-1140.
[14] HUANG Xue-feng ,YANG Xiao-hui,. A study progress on in-situ soaking test on collapsible loess [J]. , 2013, 34(S2): 222-228.
[15] CHEN Pan , LI Yong-he , WANG Ji-li , WEI Chang-fu , WU Er-lin , YAN Rong-tao . Effect of squeezing silt by blasting on compression characteristics of marine soft clays [J]. , 2012, 33(S1): 49-55.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] HUANG Jian-hua,SONG Er-xiang. Research on mechanical properties of frozen curtain in large anchorage foundation pit engineering[J]. , 2009, 30(11): 3372 -3378 .
[2] YAO Yang-ping,FENG Xing,HUANG Xiang,LI Chun-liang. Application of UH model to finite element analysis[J]. , 2010, 31(1): 237 -245 .
[3] WANG Zhao-yang, XU Qiang, NI Wan-kui. Study of undisturbed loess stress-strain relation during CT test[J]. , 2010, 31(2): 387 -391 .
[4] WAN Shao-shi, NIAN Ting-kai, JIANG Jing-cai, LUAN Mao-tian. Discussion on several issues in slope stability analysis based on shear strength reduction finite element methods (SSR-FEM)[J]. , 2010, 31(7): 2283 -2288 .
[5] XU Wei-sheng, CHAI Jun-rui, CHEN Xing-zhou, SUN Xu-shu. Study of nonlinear noncubic seepage in netwok rock and its application[J]. , 2009, 30(S1): 53 -57 .
[6] CHEN Bao-guo , SUN Jin-shan , ZHANG Lei. Study of stressing state and ground treatment of reinforced concrete arch culvert[J]. , 2011, 32(5): 1500 -1506 .
[7] ZHAO Yue-tang, LIN Jia-wei, SHI Lei. Research of spalling under impulse loading[J]. , 2011, 32(S2): 122 -126 .
[8] YUAN Jing-qiang , CHEN Wei-zhong , TAN Xian-jun , WANG Hui. Mesomechanical simulation of grouting in weak strata[J]. , 2011, 32(S2): 653 -659 .
[9] ZHOU Jia-wu, LIU Yuan-xue, LU Xin, ZHENG Ying-ren. Existence and decoupling for flow potential of geomaterials[J]. , 2012, 33(2): 375 -381 .
[10] GENG Xue-yu , YU Jie . Biot consolidation of a transversely isotropic soil layer under traffic loading[J]. , 2012, 33(5): 1366 -1374 .