Journal of Jilin University(Engineering and Technology Edition) ›› 2020, Vol. 50 ›› Issue (5): 1718-1727.doi: 10.13229/j.cnki.jdxbgxb20190581
Hao GAO1(),Jun-jie WANG1(),Hui-jie LIU2,Jian-ming WANG3
CLC Number:
1 | 范立础, 李建中. 汶川桥梁震害分析与抗震设计对策[J]. 公路, 2009(5): 122-128. |
Fan Li-chu, Li Jian-zhong. Earthquake damage analysis and seismic design countermeasures of Wenchuan bridge[J]. Highway, 2009(5): 122-128. | |
2 | Ghasemi H, Cooper J D, Imbsen R A, et al. The November 1999 Duzce earthquake: post-earthquake investigation of the structures on the Tem[R]. United States: Federal Highway Administration, 2000. |
3 | Roussis P C, Constantinou M C, Erdik M, et al. Assessment of performance of seismic isolation system of Bolu Viaduct[J]. Journal of Bridge Engineering, 2003, 8(4): 182-190. |
4 | Park S W, Ghasemi H, Shen J, et al. Simulation of the seismic performance of the Bolu Viaduct subjected to near‐fault ground motions[J]. Earthquake Engineering & Structural Dynamics, 2004, 33(13): 1249-1270. |
5 | Güney D, Acar M, Özlüdemir M T, et al. Investigation of post-earthquake displacements in viaducts using Geodetic and Finite Element Methods[J]. Natural Hazards & Earth System Sciences, 2010, 10(12): 2579-2587. |
6 | Tobias D H, Hajjar J F, Anderson R E, et al. Development and refinement of Illinois’ earthquake resisting system strategy[C/OL]. [2019-10-01]. VELOPMENT_AND_REFINEMENT_OF_ILLINOIS'_EARTHQUAKE_RESISTING_SYSTEM_STRATEGY |
7 | Tobias D H, Anderson R E, Hodel C E, et al. Overview of earthquake resisting system design and retrofit strategy for bridges in Illinois[J]. Practice Periodical on Structural Design and Construction, 2008, 13(3): 147-158. |
8 | California Department of Transportation(Sacramento). Caltrans Seismic Design Criteria[EB/OL].[2015-02-18] 5035.html |
9 | Li J, Xiang N, Tang H, et al. Shake-table tests and numerical simulation of an innovative isolation system for highway bridges[J]. Soil Dynamics and Earthquake Eengineering, 2016, 86: 55-70. |
10 | 李建中, 汤虎. 中小跨径板式橡胶支座梁桥横向抗震设计研究[J]. 土木工程学报, 2016, 49(11): 69-78. |
Li Jian-zhong, Tang Hu. Study on transverse seismic design of small and medium span bridges with elastomeric bearing pads[J]. China Civil Engineering Journal, 2016, 49(11): 69-78. | |
11 | Xiang N, Alam M S, Li J. Shake table studies of a highway bridge model by allowing the sliding of laminated-rubber bearings with and without restraining devices[J]. Engineering Structures, 2018, 171: 583-601. |
12 | Xiang N, Li J. Experimental and numerical study on seismic sliding mechanism of laminated-rubber bearings[J]. Engineering Structures, 2017, 141: 159-174. |
13 | Xiang N L, Li J Z. Seismic performance of highway bridges with different transverse unseating-prevention devices[J]. Journal of Bridge Engineering, 2016, 21(9): 1-10. |
14 | Steelman J S, Filipov E T, Fahnestock L A, et al. Experimental behavior of steel fixed bearings and implications for seismic bridge response[J/OL]. [2014-08-25]. |
15 | Filipov E T, Revell J R, Fahnestock L A, et al. Seismic performance of highway bridges with fusing bearing components for quasi-isolation[J]. Earthquake Engineering & Structural Dynamics, 2013, 42(9): 1375-1394. |
16 | Filipov E T, Fahnestock L A, Steelman J S, et al. Evaluation of quasi-isolated seismic bridge behavior using nonlinear bearing models[J]. Engineering Structures, 2013, 49: 168-181. |
17 | Peng T, Guo N. An equivalent linear model for shear pin fractures and its experimental verification[J]. Journal of Vibroengineering, 2016, 18(8): 5281-5290. |
18 | Peng T, Guo N. Experimental and numerical studies of shear pin fractures based on linear and bilinear models[J]. Mechanics, 2016, 22(4): 245-250. |
19 | Chiarotto D, Tomaselli F, Baldo P, et al. Seismic protection of Tuy Medio railway viaducts: design and shaking table tests of the seismic devices[C]∥Proceedings 13th World Conference on Earthquake Engineering (WCEE), Canada, 2004. |
20 | Shen X, Wang X, Ye A, et al. Seismic performance of transverse steel damper seismic system for long span bridges[J]. Engineering Structures, 2017, 141: 14-28. |
21 | Zhou L, Wang X, Ye A. Shake table test on transverse steel damper seismic system for long span cable-stayed bridges[J]. Engineering Structures, 2019, 179: 106-119. |
22 | 庄军生. 桥梁支座[M]. 3版. 北京: 中国铁道出版社, 2008. |
23 | 李锐, 张路阳, 刘琳, 等. 基于相似理论的三跨桥梁磁流变隔振[J]. 吉林大学学报: 工学版, 2018, 48(3): 787-795. |
Li Rui, Zhang Lu-yang, Liu Lin, et al. Magneto-rheological vibration isolation for three-span bridge based on similarity theory[J]. Journal of Jilin University(Engineering and Technology Edition), 2018, 48(3): 787-795. | |
24 | 贾毅, 赵人达, 王永宝, 等. 多跨长联连续梁桥粘滞阻尼器参数敏感性分析[J]. 吉林大学学报: 工学版, 2019, 49(6): 1871-1883. |
Jia Yi, Zhao Ren-da, Wang Yong-bao, et al. Sensitivity analysis of viscous damper parameters for multi-span and long-unit continuious girder bridges[J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(6): 1871-1883. | |
25 | 王君杰, 王志强, 章小檀, 等. 可滑移柱形软钢阻尼装置及其在桥梁上的应用[P]. 中国:CN200810204146.2, 2010-06-23. |
26 | Tyler R G. Tapered steel energy dissipators for earthquake resistant structures[J]. Bulletin of the New Zealand National Society for Earthquake Engineering, 1978, 11(4): 282-294. |
27 | 庄军生. 桥梁减震、隔震支座和装置[M]. 北京: 中国铁道出版社, 2012. |
28 | Wang H, Zhou R, Zong Z H, et al. Study on seismic response control of a single-tower self-anchored suspension bridge with elastic-plastic steel damper[J]. Science China Technological Sciences, 2012, 55(6): 1496-1502. |
29 | 宫亚峰, 王博, 谭国金, 等. 吉林省两种典型装配式箱涵受力特性对比分析[J]. 吉林大学学报: 工学版, 2019, 49(6): 1865-1870. |
Gong Ya-feng, Wang Bo, Tan Guo-jin, et al. Comparative analysis of mechanical characteristics of two typical fabricated culverts in Jilin[J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(6): 1865-1870. | |
30 | JT/T843—2012. 公路桥梁弹塑性钢减震支座[S]. |
[1] | Hua CHEN,Yao-jia CHEN,Bin XIE,Peng-kai WANG,Lang-ni DENG. Interface failure mechanism and bonding strength calculation of CFRP tendons bonded anchorage system [J]. Journal of Jilin University(Engineering and Technology Edition), 2020, 50(5): 1698-1708. |
[2] | Yun-long ZHANG,Yang-yang GUO,Jing WANG,Dong LIANG. Natural frequency and mode of vibration of steel⁃concrete composite beam [J]. Journal of Jilin University(Engineering and Technology Edition), 2020, 50(2): 581-588. |
[3] | Qian-hui PU,Jing-wen LIU,Gang-yun ZHAO,Meng YAN,Xiao-bin LI. Theoretical analysis of bearing capacity of concrete eccentric compressive column reinforced by HTRCS [J]. Journal of Jilin University(Engineering and Technology Edition), 2020, 50(2): 606-612. |
[4] | Miao ZHANG,Yong-jiu QIAN,Fang ZHANG,Shou-qin ZHU. Experimental analysis of spatial force performance of concrete-reinforced stone arch bridge based on enlarged section method [J]. Journal of Jilin University(Engineering and Technology Edition), 2020, 50(1): 210-215. |
[5] | Bo-xin WANG,Hai-tao YANG,Qing WANG,Xin GAO,Xiao-xu CHEN. Bridge vibration signal optimization filtering method based on improved CEEMD⁃multi⁃scale permutation entropy analysis [J]. Journal of Jilin University(Engineering and Technology Edition), 2020, 50(1): 216-226. |
[6] | Chun-ling ZHONG,Dong LIANG,Yun-long ZHANG,Jing WANG. Calculation of natural vibration frequency of simply supported beam strengthened by external prestressing [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(6): 1884-1890. |
[7] | Yi JIA,Ren-da ZHAO,Yong-bao WANG,Fu-hai LI. Sensitivity analysis of viscous damper parameters for multi⁃span and long⁃unit continuous girder bridges [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(6): 1871-1883. |
[8] | Lun-hua BAI,Rui-li SHEN,Xing-biao ZHANG,Lu WANG. In-plane stability of self-anchored suspension bridge [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(5): 1500-1508. |
[9] | Jin⁃gang ZHAO,Ming ZHANG,Yu⁃lin ZHAN,Ming⁃zhi XIE. Damage criterion of reinforced concrete pier based on plastic strain energy density [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(4): 1124-1133. |
[10] | Shi⁃cheng WAN,Qiao HUANG,Jian GUAN,Zhao⁃yuan GUO. Strengthening of continuous steel⁃concrete composite beams in negative moment region using prestressed carbon fiber⁃reinforced polymer plates [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(4): 1114-1123. |
[11] | Wan⁃heng LI,Lin SHEN,Shao⁃peng WANG,Shang⁃chuan ZHAO. Damage assessment of bridge construction based onmulti⁃stage subregion mobile test [J]. Journal of Jilin University(Engineering and Technology Edition), 2019, 49(3): 773-780. |
[12] | HUI Ying-xin,MAO Ming-jie,LIU Hai-feng,ZHANG Shang-rong. Influence of structural seismic response of bridges crossing active fault [J]. Journal of Jilin University(Engineering and Technology Edition), 2018, 48(6): 1725-1734. |
[13] | ZHENG Yi-feng, ZHAO Qun, BAO Wei, LI Zhuang, YU Xiao-fei. Wind resistance performance of long-span continuous rigid-frame bridge in cantilever construction stage [J]. 吉林大学学报(工学版), 2018, 48(2): 466-472. |
[14] | GONG Ya-feng, HE Yu-long, TAN Guo-jin, SHEN Yang-fan. Anti-overturning stability analysis for three-span continuous curved girder bridge with single column pier [J]. 吉林大学学报(工学版), 2018, 48(1): 133-140. |
[15] | WEI Zhi-gang, LIU Han-bing, SHI Cheng-lin, GONG Ya-feng. Calculation of transverse distribution coefficient of simply supported beam bridge with effect of bridge deck pavement [J]. 吉林大学学报(工学版), 2018, 48(1): 105-112. |
|