[1] 钱七虎.迎接我国城市地下空间开发高潮[J].岩土工程学报,1998,20(1):112-113.
QIAN Qi-hu.Welcome Our Country City Underground Space Development Climax[J].Chinese Journal of Geotechnical Engineering,1998,20(1):112-113.
[2]余海岁,庄培芝.岩土介质小孔收缩理论及其在隧道工程中的应用[J].隧道与地下工程灾害防治,2019,1(4):13-32.
YU Hai-sui,ZHUANG Pei-zhi.Cavity Contraction Theory and Its Application to Tunnelling[J].Hazard Control in Tunnelling and Underground Engineering,2019,1(4):13-32.
[3]PECK R B.Deep Excavations and Tunneling in Soft Ground[C]//ICSMFE.Proceedings of the 7th International Conference on Soil Mechanics and Foundation Engineering.Mexico City:ICSMFE,1969:225-290.
[4]JACOBSZ S W,STANDING J R,MAIR R J,et al.Centrifuge Modelling of Tunnelling Near Driven Piles[J].Soils and Foundations,2004,44(1):49-56.
[5]LOGANATHAN N,POULOS H G.Analytical Prediction for Tunneling-induced Ground Movements in Clays[J].Journal of Geotechnical and Geoenvironmental Engineering,1998,124(9):846-856.
[6]VERRUIJT A,BOOKER J R.Surface Settlements Due to Deformation of a Tunnel in an Elastic Half Plane[J].Geotechnique,1996,46(4):753-756.
[7]LOGANATHAN N,POULOS H G,XU K J.Ground and Pile-group Responses Due to Tunnelling.[J].Soils and Foundations,2001,41(1):57-67.
[8]黄茂松,江 杰,张陈蓉.基于Winkler模型的桩基分析方法[J].土木工程学报:2007,40(增):122-127.
HUANG Mao-song,JIANG Jie,ZHANG Chen-rong.Analysis for Piled Foundation Based on Winkler Models[J].China Civil Engineering Journal,2007,40(S):122-127.
[9]张治国,徐 晨,宫剑飞.隧道开挖对邻近桩基变形及承载能力影响的弹塑性解答[J].岩石力学与工程学报,2017,36(1):208-222.
ZHANG Zhi-guo,XU Chen,GONG Jian-fei.An Elasto-plastic Solution of Pile Deflection and Pile Load Capacity Due to Adjacent Tunneling[J].Chinese Journal of Rock Mechanics and Engineering,2017,36(1):208-222.
[10]张治国,鲁明浩,徐 晨,等.基于Kerr地基模型的隧道开挖诱发桩基变形简化方法[J].现代隧道技术,2016,53(6):55-66.
ZHANG Zhi-guo,LU Ming-hao,XU Chen,et al.Simplified Solution for Tunnelling-induced Pile Foundation Deformation Based on the Kerr Foundation Model[J].Modern Tunnelling Technology,2016,53(6):55-66.
[11]朱逢斌,杨 平,林水仙.盾构隧道施工对邻近承载桩基影响研究[J].岩土力学,2010,31(12):3894-3900.
ZHU Feng-bin,YANG Ping,LIN Shui-xian.Study of Influence of Shield Tunneling on Neighboring Loaded Piles[J].Rock and Soil Mechanics,2010,31(12):3894-3900.
[12]郭孝坤.郑州地铁盾构下穿施工对既有建筑桩基承载力的影响研究[D].郑州:郑州大学,2015.
GUO Xiao-kun.Study on Effects of Shield Tunnelling Underneath Pile Foundation of Existing Building on Bearing Capacity in Zhengzhou[D].Zhengzhou:Zhengzhou University,2015.
[13]韩进宝,熊巨华,孙 庆,等.邻近桩基受隧道开挖影响的多因素三维有限元分析[J].岩土工程学报,2011,33(增2):339-344.
HAN Jin-bao,XIONG Ju-hua,SUN Qing,et al.Multi-factor Three-dimensional Finite Element Analysis of Effects of Tunnel Construction on Adjacent Pile Foundation[J].Chinese Journal of Geotechnical Engineering,2011,33(S2):339-344.
[14]LEE C J,CHIANG K H.Load Transfer on Single Pile near New Tunnelling in Sandy Ground[C]//JGS.Proceedings of the International Symposium on Engineering Practice and Performance of Soft Deposits.Osaka:JGS,2004:501-506.
[15]MARSHALL A M.Tunnelling in Sand and Its Effect on Pipelines and Piles[D].Cambridge:University of Cambridge,2009.
[16]孙 庆,杨 敏,冉 侠,等.隧道开挖对周围土体及桩基影响的试验研究[J].同济大学学报:自然科学版,2011,39(7):989-993,1025.
SUN Qing,YANG Min,RAN Xia,et al.Test Study on Tunnelling-induced Soil Movements and Pile Responses[J].Journal of Tongji University:Natural Science,2011,39(7):989-993,1025.
[17]FRANZA A,MARSHALL A M.Centrifuge Modelling of Tunnelling Beneath Axially Loaded Displacement and Non-displacement Piles in Sand[J].Journal of Geotechnical and Geoenvironmental Engineering,2017,277:576-586.
[18]BISHOP R F,HILL R,MOTT N F.The Theory of Indentation Hardness Tests[J].Proceedings of Physics Society,1945,57:147-159.
[19]VESIC A S.Design of Pile Foundations[M].Washington DC:Transportation Research Board,1977.
[20]COLLINS I F,YU H S.Undrained Cavity Expansions in Critical State Soils[J].International Journal for Numerical and Analytical Methods in Geomechanics,1996,20(7):489-516.
[21]MO P Q,YU H S.Undrained Cavity Expansion Analysis with a Unified State Parameter Model for Clay and Sand[J].Geotechnique,2017,67(6):503-515.
[22]YU H S.岩土介质小孔扩张理论[M].周国庆,赵光思,梁恒昌,等,译.北京:科学出版社,2020.
YU H S.Cavity Expansion Methods in Geomechanics[M].Translated by ZHOU Guo-qing,ZHAO Guang-si,LIANG Heng-chang,et al.Beijing:Science Press,2020.
[23]MO P Q,YU H S.Undrained Cavity-contraction Analysis for Prediction of Soil Behavior Around Tunnels[J].International Journal of Geomechanics,2017,17(5):04016121.
[24]SUZUKI Y,LEHANE B M.Analysis of CPT End Resistance at Variable Penetration Rates Using the Spherical Cavity Expansion Method in Normally Consolidated Soils[J].Computers and Geotechnics,2015,69:141-152.
[25]YASUFUKU N,HYDE A F L.Pile End-bearing Capacity in Crushable Sands[J].Geotechnique,1995,45(4):663-676.
[26]MAIR R J,TAYLOR R N,BRACEGIRDLE A.Subsurface Settlement Profiles Above Tunnels in Clays[J].Geotechnique,1993,43(2):315-320.
[27]YU H S,ROWE R K.Plasticity Solutions for Soil Behaviour Around Contracting Cavities and Tunnels[J].International Journal for Numerical and Analytical Methods in Geomechanics,1999,23(12):1245-1279.
[28]MARSHALL A M.Tunnel-pile Interaction Analysis Using Cavity Expansion Methods[J].Journal of Geotechnical and Geoenvironmental Engineering,2012,138(10):1237-1246.
[29]莫品强,高新慰,黄子丰,等.下穿隧道开挖引起的挤土桩沉降控制分析方法[J].岩土力学,2019,40(10):3823-3832,3843.
MO Pin-qiang,GAO Xin-wei,HUANG Zi-feng,et al.Analytical Method for Settlement Control of Displacement Pile Induced by Undercrossing Tunnel Excavation[J].Rock and Soil Mechanics,2019,40(10):3823-3832,3843.
[30]MARSHALL A M,FARRELL R,KLAR A,et al.Tunnels in Sands:The Effect of Size,Depth and Volume Loss on Greenfield Displacements[J].Geotechni-que,2012,62(5):385-399.