上海交通大学学报 ›› 2024, Vol. 58 ›› Issue (7): 1086-1096.doi: 10.16183/j.cnki.jsjtu.2022.435
冯忠居1, 王伟1(), 张聪1, 朱继新2, 王逸然1, 孟莹莹3
收稿日期:
2022-11-01
修回日期:
2022-12-13
接受日期:
2022-12-21
出版日期:
2024-07-28
发布日期:
2024-07-26
通讯作者:
王 伟,硕士生;E-mail:2596552961@qq.com.
作者简介:
冯忠居(1965-),教授,从事桥梁桩基础工程方面研究.
基金资助:
FENG Zhongju1, WANG Wei1(), ZHANG Cong1, ZHU Jixin2, WANG Yiran1, MENG Yingying3
Received:
2022-11-01
Revised:
2022-12-13
Accepted:
2022-12-21
Online:
2024-07-28
Published:
2024-07-26
摘要:
为研究地震动作用下震陷土层厚度不同时大直径变截面单桩与群桩基础的动力响应差异,依托厦门第二东通道翔安大桥,通过振动台模型试验,开展震陷土层厚度30、40、50 cm时,单桩与群桩基础桩周土震陷量、桩顶水平位移、桩身加速度及弯矩动力响应差异研究.结果表明:随着震陷层厚度增大,单桩与群桩基础桩周土震陷量、桩顶水平位移、桩身加速度及弯矩均逐渐增大,且加速度及弯矩在变截面处突变;同一震陷层厚度下,群桩基础桩周土震陷量较单桩大,但群桩基础加速度、桩顶水平位移及桩身弯矩均小于单桩.震陷场地桩基础设计时,应着重考虑变截面单桩与群桩动力响应差异,保证桩基础抗震性能.
中图分类号:
冯忠居, 王伟, 张聪, 朱继新, 王逸然, 孟莹莹. 震陷土层变化下变截面单、群桩动力响应差异[J]. 上海交通大学学报, 2024, 58(7): 1086-1096.
FENG Zhongju, WANG Wei, ZHANG Cong, ZHU Jixin, WANG Yiran, MENG Yingying. Dynamic Response Difference of Single Pile and Pile Group with Variable Section in Variation of Seismic Subsidence Soil Layer[J]. Journal of Shanghai Jiao Tong University, 2024, 58(7): 1086-1096.
[1] | DONG Y X, FENG Z J, HE J B, et al. Seismic response of a bridge pile foundation during a shaking table test[J]. Shock And Vibration, 2019, 19(2): 1-16. |
[2] | 谭婕, 王奎华, 涂园, 等. 大直径变截面桩速度波衰减特性研究与应用[J]. 岩石力学与工程学报, 2021, 40(2): 419-431. |
TAN Jie, WANG Kuihua, TU Yuan, et al. Velocity wave attenuation characteristics of large-diameter variable section piles and the application[J]. Chinese Journal of Rock Mechanics and Engineering, 2021, 40(2): 419-431. | |
[3] | FENG Z J, HU H B, DONG Y X, et al. Effect of steel casing on vertical bearing characteristics of steel tube-reinforced concrete piles in loess area[J]. Applied Sciences, 2019. 9(14): 28-40. |
[4] | ZHANG C, FENG Z J, GUAN Y H, et al. Study on liquefaction resistance of pile group by shaking table test[J]. Advances in Civil Engineering, 2022, 20(12): 1-12. |
[5] | DONG Y X, FENG Z J, HE J B, et al. The horizontal bearing capacity of composite concrete-filled steel tube piles[J]. Advances in Civil Engineering, 2020, 20(16): 1-15. |
[6] | 冯忠居, 张聪, 何静斌, 等. 强震作用下嵌岩单桩时程响应振动台试验[J]. 岩土力学, 2021, 42(12): 3227-3237. |
FENG Zhongju, ZHANG Cong, HE Jingbin, et al. Shaking table test of time-history response of rock-socketed single pile under strong earthquake[J]. Rock and Soil Mechanics, 2021, 42(12): 3227-3237. | |
[7] | 江杰, 柴文成, 欧孝夺, 等. 基于Timoshenko-Pasternak 模型的多向受荷桩水平动力响应分析[J]. 岩石力学与工程学报, 2022, 41(1): 172-185. |
JIANG Jie, CHAI Wencheng, OU Xiaoduo, et al. Horizontal dynamic response analysis of multi-directional loaded piles based on Timoshenko-Pasternak model[J]. Chinese Journal of Rock Mechanics and Engineering, 2022, 41(1): 172-185. | |
[8] | 辛宇, 崔春义, 许成顺, 等. 双参数层状地基中大直径单桩水平振动解析解与分析[J]. 振动工程学报, 2022, 35(3): 585-594. |
XIN Yu, CUI Chunyi, XU Chengshun, et al. Analytical analysis and solution of horizontal vibration of large diameter single pile in two-parameter layered soils[J]. Journal of Vibration Engineering, 2022, 35(3): 585-594. | |
[9] | 王奎华, 郭海超, 高柳, 等. 三维波动土中带承台单桩的纵向振动特性研究[J]. 岩石力学与工程学报, 2018, 37(2): 497-505. |
WANG Kuihua, GUO Haichao, GAO Liu, et al. Longitudinal vibration of single pile with cushion cap in three-dimensional layered surrounding soil[J]. Chinese Journal of Rock Mechanics and Engineering, 2018, 37 (2): 497-505. | |
[10] | ROVITHIS E, MYLONAKIS G, PITILAKIS K. Dynamic. pngfness and kinematic response of single piles in inhomogeneous soil[J]. Bulletin of Earthquake Engineering, 2013, 11(6): 1949-1972. |
[11] | 庄海洋, 赵畅, 于旭, 等. 液化地基上隔震结构群桩与土动力相互作用振动台模型试验研究[J]. 岩土工程学报, 2022, 44(6): 979-987. |
ZHUANG Haiyang, ZHAO Chang, YU Xu, et al. Earthquake responses of piles-soil dynamic interaction system for base-isolated structure system based on shaking table tests[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(6): 979-987. | |
[12] | 许成顺, 豆鹏飞, 杜修力, 等. 非液化土-群桩基础-结构体系相互作用动力响应振动台试验研究[J]. 建筑结构学报, 2022, 43(5): 185-194. |
XU Chengshun, DOU Pengfei, DU Xiuli, et al. Dynamic interaction and seismic response of non-liquefiable soil-pile group foundation-structure system from shaking table test[J]. Journal of Building Structures, 2022, 43 (5): 185-194. | |
[13] | LEI S U, TANG L, LING X Z, et al. Responses of reinforced concrete pile group in two-layered liquefied soils: Shake-table investigations[J]. Journal of Zhejiang University-Science A (Applied Physics & Engineering), 2015, 16(2): 93-104. |
[14] | 李雨润, 闫志晓, 张健, 等. 饱和砂土中直群桩动力响应离心机振动台试验与简化数值模型研究[J]. 岩石力学与工程学报, 2020, 39(6): 1252-1264. |
LI Yurun, YAN Zhixiao, ZHANG Jian, et al. Centrifugal shaking table test and numerical simulation of dynamic responses of straight pile group in saturated sand[J]. Chinese Journal of Rock Mechanics and Engineering, 2020, 39(6): 1252-1264. | |
[15] | 张恒源, 钱德玲, 沈超, 等. 水平和竖向地震作用下液化场地群桩基础动力响应试验研究[J]. 岩土力学, 2020, 41(3): 905-914. |
ZHANG Hengyuan, QIAN Deling, SHEN Chao, et al. Experimental investigation on dynamic response of pile group foundation on liquefiable ground subjected to horizontal and vertical earthquake excitations[J]. Rock and Soil Mechanics, 2020, 41(3): 905-914. | |
[16] | RAHMANI A, PAK A. Dynamic behavior of pile foundations under cyclic loading in liquefiable soils[J]. Computers & Geotechnics, 2012, 40(3): 114-126. |
[17] | 江辉, 王志, 白晓宇, 等. 近、远场强震下深水桥梁群桩基础的非线性响应及损伤特性[J]. 振动与冲击, 2017, 36(24): 13-22. |
JIANG Hui, WANG Zhi, BAI Xiaoyu, et al. Nonlinear responses and damage characteristics for group-piles foundation of a deep-water bridge under strong near-fault and far-field earthquakes[J]. Journal of Vibration and Shock, 2017, 36(24): 13-22. | |
[18] | 田兆阳, 李平, 朱胜, 等. 强震作用下软土场地桩基负摩阻力振动台试验研究[J]. 岩土工程学报, 2022, 44(3): 550-559. |
TIAN Zhaoyang, LI Ping, ZHU Sheng, et al. Shaking table tests on negative friction of piles in soft soils under strong earthquake motion[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(3): 550-559. | |
[19] | 孙军杰. 黄土场地震陷与桩基负摩阻力现场试验研究[J]. 岩石力学与工程学报, 2011, 30(6): 1297. |
SUN Junjie. Study of seismic subsidence for loess and negative skin friction along piles by field test[J]. Chinese Journal of Rock Mechanics and Engineering, 2011, 30(6): 1297. | |
[20] | 叶朝良, 梁凯芳, 王向阳. 湿陷性黄土区桩基负摩阻力统计分析及建议[J]. 铁道工程学报, 2018, 35(1): 6-10. |
YE Chaoliang, LIANG Kaifang, WANG Xiangyang. Statistical analysis and proposal on pile negative friction in collapsible loess areas[J]. Journal of Railway Engineering Society, 2018, 35(1): 6-10. | |
[21] | 黄雪峰, 杨校辉, 殷鹤, 等. 湿陷性黄土场地湿陷下限深度与桩基中性点位置关系研究[J]. 岩土力学, 2015, 36 (Sup.2): 296-302. |
HUANG Xuefeng, YANG Xiaohui, YIN He, et al. Study of relationship between maximum collapsing depth and neutral point position of pile foundation in collapsible loess ground[J]. Rock and Soil Mechanics, 2015, 36 (Sup.2): 296-302. | |
[22] | 中华人民共和国建设部. 岩土工程勘察规范: GB 50021—2001[S]. 北京: 中国建筑工业出版社, 2002. |
Ministry of Construction of the People’s Republic of China. Geotechnical engineering survey specifications: GB 50021—2001[S]. Beijing: China Construction Industry Press, 2002. | |
[23] | 袁林娟, 刘小生, 汪小刚, 等. 振动台土-箱结构模型动力特性及反应的解析分析[J]. 岩土工程学报, 2012, 34(6): 1038-1042. |
YUAN Linjuan, LIU Xiaosheng, WANG Xiaogang, et al. Analytic solution of dynamic characteristics and responses of soil-box model for shaking table tests[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(6): 1038-1042. | |
[24] | 吕西林, 陈跃庆, 陈波, 等. 结构-地基动力相互作用体系振动台模型试验研究[J]. 地震工程与工程振动, 2000, 20(4): 20-29. |
LÜ Xilin, CHEN Yueqing, CHEN Bo, et al. Shaking table testing of dynamic soil-structure interaction system[J]. Earthquake Engineering and Engineering Vibration, 2000, 20(4): 20-29. | |
[25] | 李培振, 陈跃庆, 吕西林, 等. 较硬分层土-桩基-结构相互作用体系振动台试验[J]. 同济大学学报(自然科学版), 2006, 34(3): 307-313. |
LI Peizhen, CHEN Yueqing, LÜ Xilin, et al. Shaking table testing of hard layered soil-pile structure interaction system[J]. Journal of Tongji University (Natural Science), 2006, 34(3): 307-313. | |
[26] | 张敏政. 地震模拟实验中相似律应用的若干问题[J]. 地震工程与工程振动, 1997, 17(2): 52-58. |
ZHANG Minzheng. Study on similitude laws for shaking table tests[J]. Earthquake Engineering and Engineering Dynamics, 1997, 17(2): 52-58. | |
[27] | 黄维平, 邬瑞锋, 张前国. 配重不足时的动力试验模型与原型相似关系问题的探讨[J]. 地震工程与工程振动, 1994, 14(4): 64-71. |
HUANG Weiping, WU Ruifeng, ZHANG Qianguo. Study on the analogy between scale models with less ballast and their prototypes under shaking table test[J]. Earthquake Engineering and Engineering Vibration, 1994, 14(4): 64-71. | |
[28] | KORRE E, ABDOUN T H, ZEGHAL M. Verification of generalized scaling laws: Two centrifuge tests of a liquefiable sloping deposit[J]. Soil Dynamics and Earthquake Engineering, 2020, 14(3): 23-30. |
[29] | 李德寅, 王邦楣, 林亚超. 结构模型实验[M]. 北京: 科学出版社, 1996. |
LI Deyin, WANG Bangmei, LIN Yachao. Structural model experiment[M]. Beijing: Science Press, 1996. | |
[30] | 高孟潭. 中国地震动参数区划图[M]. 北京: 中国质检出版社, 2015. |
GAO Mengtan. Zoning map of ground motion parameters in China[M]. Beijing: China Quality Inspection Press, 2015. | |
[31] | 胡铖波, 梅岭, 梅国雄, 等. 桩土模型中土体边界选取的有限元分析[J]. 建筑科学, 2009, 25(9): 18-20. |
HU Chengbo, MEI Ling, MEI Guoxiong, et al. Finite element method for selecting the soil boundary in the model of pile-soil[J]. Building Science, 2009, 25(9): 18-20. |
[1] | 王斌,车爱兰,葛修润. 岩质高陡边坡动力响应及失稳机制大型振动台模型试验研究[J]. 上海交通大学学报(自然版), 2015, 49(07): 951-956. |
[2] | 吴志坚1,2,3,雷天1,2,陈豫津1,2,王平1,2,3,柴少峰1,2,3. 黄土斜坡变形失稳破坏特征的振动台模型试验[J]. 上海交通大学学报(自然版), 2015, 49(07): 940-945. |
[3] | 金玉龙, 吴天行. 集装箱码头岸桥结构的动力相似分析与试验验证[J]. 上海交通大学学报(自然版), 2012, 46(10): 1609-1615. |
[4] | 禹海涛1, 2a, 袁勇2b, 徐国平3, 陈越4. 超长沉管隧道抗震设计及其关键性问题分析[J]. 上海交通大学学报(自然版), 2012, 46(01): 94-98. |
[5] | 葛继平,王志强,李胡生. 基于小波包能量统计方法的桥墩振动台试验分析[J]. 上海交通大学学报(自然版), 2010, 44(06): 803-0806. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||