[1] 宋波,刘泉,李凡凡,等.考虑桩土相互作用的大跨度钢拱桥地震反应分析[J].北京科技大学学报,2009,31(9):1077-1085.
SONG Bo, LIU Quan, LI Fanfan, et al. Influence of soil-pile interaction on the seismic response analysis of a large-span steel arch bridge[J].Journal of University of Science and Technology Beijing, 2009, 31(9): 1077-1085.
[2] 庄卫林,陈乐生.汶川地震公路震害分析:桥梁与隧道[M].北京:人们交通出版社,2013.
ZHUANG Weilin, CHEN Lesheng. Analysis of Highways’ Damage in the Wenchuan Earthquake: Bridge and Tunnel[M]. Beijing: China Communications Press, 2013.
[3] BI Kaiming, HONG Hao, CHOUW N. Influence of ground motion spa-tial variation, site condition and SSI on the required separation distances of bridge structures to avoid seismic pounding[J]. Earthquake Engineering & Structural Dynamics, 2011, 40(9): 1027-1043.
[4] SUN Limin, XIE Wen. Experimental assessment of soil-structure inte-raction effects on a super long-span cable-stayed-bridge with pile group foundations[J]. Bulletin of Earthquake Engineering, 2019, 17: 3169-3196.
[5] FENG Zhiren, SU Lei, WAN Huaping, et al. Three-dimensional finite element modelling for seismic response analysis of pile-supported bridges[J]. Structure and Infrastructure Engineering, 2019, 15(12): 1583-1596.
[6] PENZIEN J, SCHEFFEY C F, PARMELEE R A. Seismic analysis of bridges on long piles[J].Journal of Engineering Mechanics Division, 1964, 90(3): 223-254.
[7] 范立础.桥梁抗震[M].上海:同济大学出版社,1997.
FAN Lichu. Seismic Design of Bridges[M]. Shanghai: Tongji University Press, 1997.
[8] MCCLELLAND B, FOCHT J A. Soil modulus for laterally loaded piles[J].Journal of the Soil Mechanics and Foundations Division, 1956, 82(4): 1-22.
[9] MATLOCK H, REESE L C. Generalized solutions for laterally loaded piles[J].Journal of the Soil Mechanics and Foundations Division, 1960, 86(5): 63-91.
[10] REESE L C, Van-IMPE W F. Single Piles and Pile Groups Under Lateral Loading[M]. Rotterdam: AA Balkema, 2001.
[11] TEHRANI P K, AHLBERG E R, RHA C, et al. Nonlinear load-deflection behavior of reinforced concrete drilled piles in stiff clay[J].Journal of Geotechnical and Geoenvironmental Engineering, 2014, 140(3): 1-14.
[12] 张小玲,朱冬至,许成顺,等.强度弱化条件下饱和砂土地基中桩-土相互作用p-y曲线研究[J].岩土力学,2020,41(7):2252-2260.
ZHANG Xiaoling, ZHU Dongzhi, XU Chengshun, et al. Research on p-y curves of soil-pile interaction in saturated sand foundation in weakened state[J]. Rock and Soil Mechanics, 2020, 41(7): 102-110.
[13] LIU Xiaoyan, CAI Guojun, LIU Lulu, et al. Improved p-y curve models for large diameter and super-long cast-in-place piles using piezocone penetration test data[J ]. Computers and Geotechnics, 2021, 130: 1-12.
[14] 李钟雄,徐略勤,李建中,等.砂土液化分析方法对连续梁桥地震响应的影响对比研究[J].结构工程师,2017,33(3):88-96.
LI Zhongxiong, XU Lueqin, LI Jianzhong, et al. Comparative study of the analytical methods for sand soil liquefaction in seismic response evaluation of continuous bridges [J]. Structural Engineers, 2017, 33(3): 88-96.
[15] ZHANG Zhi, LI Xiaojun, LAN Riqing, et al. Shaking table tests and numerical simulations of a small radius curved bridge considering SSI effect[J]. Soil Dynamics and Earthquake Engineering, 2019, 118: 1-18.
[16] 孙治国,刘亚明,司炳君,等.基于OpenSees的桩-土-桥墩相互作用非线性数值分析模型[J].世界地震工程,2018,34(4):67-74.
SUN Zhiguo, LIU Yaming, SI Bingjun, et al. Nonlinear analysis model for pile-soil-pier interaction based on OpenSees platform[J]. World Earthquake Engineering, 2018, 34(4): 67-74.
[17] 燕斌.桥梁桩基础抗震简化模型比较研究[D].上海:同济大学,2007.
YAN Bin.Study on Simplified Models of Bridge Pile-foundation Subjected to Earthquake[D]. Shanghai: Tongji University, 2007.
[18] 中交公路规划设计院.公路桥涵地基与基础设计规范:JTG 3363—2019[S].北京:人民交通出版社,2020.
CCCC Highway Consultants Co., Ltd. Specifications for Design of Foundation of Highway Bridges and Culverts: JTG 3363—2019[S]. Beijing: China Communications Press, 2020.
[19] API Recommended Practice 2A(RP-2A).Recommended Practice for Planning, Designing, and Constructing Fixed Offshore Platforms—Working Stress Design[S]. Washington D C: API, 1987.
[20] 招商局重庆交通科研设计院有限公司.公路桥梁抗震设计规范:JTG/T 2231-01—2020[S].北京:人民交通出版社,2020.
China Merchants Chongqing Communications Research & Design Institute Co.,Ltd.. Specifications for Seismic Design of Highway Bridges: JTG/T 2231-01—2020[S]. Beijing: China Communications Press, 2020.
[21] 高昊,王君杰,苏俊省,等.桩-土水平弹簧系数对桥梁地震反应影响的参数分析[J].振动与冲击,2017,36(14):156-167.
GAO Hao, WANG Junjie, SU Junsheng, et al. Parameter analysis on the influence of soil-pile horizontal spring coefficient on the seismic response of bridges[J]. Journal of Vibration and Shock, 2017, 36(14): 156-167.
[22] MATLOCK H. Correlations for design of laterally loaded piles in soft clay[C]∥Proceeding of the 2nd Annual Offshore Technology Conference. Houston, T X, 1970.
[23] NCHRP.Rock-Socketed Shafts for Highway Structures Foundations[M]. Washington D C: The National Academies Press, 2006.
[24] WANG S T, REESE L C. Comp-laterally loaded pile analysis program for the microcomputer, version 2.0. final report[J].Computer Graphics, 1993(6): 504-511.
[25] 贾俊峰,杜修力,韩强.近断层地震动特征及其对工程结构影响的研究进展[J].建筑结构学报,2015,36(1):1-12.
JIA Junfeng, DU Xiuli, HAN Qiang. A state-of-the-art review of near-fault earthquake ground motion characteristics and effects on engineering structures[J]. Journal of Building Structures, 2015, 36(1): 1-12. |