參考文獻 |
[1] Ghobarah, A. and Ali, H. M., “Seismic performance of highway bridges.” Engineering Structures, 10(3), 157-166, 1998.
[2] Bruneau, M., Wilson, J. C., and Tremblay, R., “Performance of steel bridges during the 1995 Hyogoken-Nanbu (Kobe, Japan) earthquake.” Canadian Journal of Civil, 23(3), 678-713, 1996.
[3] Otsuka, H. and et al., “Report on the Disaster Caused by the 1995 Hyogoken Nanbu Earthquake, Chapter 5, Damage to Highway Bridges.” Journal of Research, Public Works Research Institute, 33, 1997.
[4] Basöz, N. I. and Kiremidjian, A. S., “Evaluation of bridge damage data from the Loma Prieta and Northridge, CA earthquakes.” Technical Report MCEER-98-0004, Multidisciplinary Center for Earthquake Engineering Research, Buffalo, New York, 1-35., 1998.
[5] Basöz N. I., “Statistical Analysis of Bridge Damage Data from the 1994 Northridge, CA Earthquake.” Earthquake Spectra, 15(1), 25-54, 1999.
[6] Lee, G. C. and Loh, C., “Preliminary report from MCEER-NCREE workshop on the 921 Taiwan earthquake.” Multidisciplinary Center for Earthquake Engineering Research, Buffalo, New York, 1999.
[7] Kosa, K., “Mechanism of Damage to Shiwei Bridge Caused by 1999 Chi-Chi Earthquake.” A Workshop on Seismic Fault-induced Failures, 143-154, 2001.
[8] Kawashima, K., “Damage of bridge resulting from fault rupture in the 1999 KOCAELI and DUZCE, Turkey earthquakes and the 1999 Chi-Chi, Taiwan earthquake.” Structural Engineering/Earthquake engineering, JSCE, 19(2), 179-197, 2002.
[9] Celebi, M., “Successful performance of a base-isolated hospital building during the 17 January 1994 Northridge earthquake.” The Structural Design of Tall Buildings, 5(2), 95-109, 1996.
[10] Asher, J. W., “Performance of Seismically Isolated Structures in the 1994 Northridge and 1995 Kobe Earthquakes.” Proceedings of Structures Congress XV (ASCE), 1128-1132, 1997.
[11] Martelli, A. and Forni, M., “Seismic isolation of civil buildings in Europe.” Progress in Structural Engineering and Materials, 1(3), 286-294, 1998.
[12] Bozorgnia, Y., Manhin, S. A., Brady A. G., “Vertical response of twelve structures recorded during the Northridge earthquake,” Earthquake Spectra, 14(3), August, 411-432., 1998.
[13] Kelly, J. M., “Seismic isolation of civil buildings in USA.” Progress in Structural Engineering and Materials, 1(3), 279-285, 1998.
[14] Fujita, T., “Seismic isolation of civil buildings in Japan.” Progress in Structural Engineering and Materials, 1(3), 295-300, 1998.
[15] Naeim, F. and Kelly, J. M., Design of Seismic Isolated Structures: From Theory to Practice. John Wiley & Sons, inc., 1999.
[16] Yang, Y. B., Lu, L.Y., Yau, J. D., “Chapter 22: Structure and Equipment Isolation,” Vibration and Shock Handbook, edited by C. W. de Silva, CRC Press, Taylor & Francis Group, 2005.
[17] 盧煉元、鍾立來,「國內外結構控制技術之進展」,土木技術(防災科技專題),四月號,第14期,81-95頁,1999。
[18] Jangid, R.S, “Optimum friction pendulum system for near-fault motions.” Engineering Structures, Vol.27, No.3, 349-359, 2004.
[19] 盧煉元、施明祥、張婉妮,「近斷層震波對滑動式隔震結構之影響評估」,結構工程,第十八卷,第四期,第23-48頁,2003。
[20] 盧煉元、施明祥、曾旭玟、吳政彥,「滑動隔震支承之研發與其受近斷層震波行為之實驗探討」,結構工程,第二十卷,第三期,29-59頁,2005。
[21] 盧煉元、李姿瑩、葉奕麟、張洵,「變頻式搖擺支承於近域隔震之運用」,中國土木水利工程學刊,第二十二卷第三期,283-298,2010。
[22] Lu, L. Y., Lee, T. Y., Juang, S. Y., Yeh, S. W., “Polynomial friction pendulum isolators (PFPIs) for building floor isolation: an experimental and theoretical study.” Engineering Structures, Vol. 56, 970-982, 2013.
[23] Lu, L.Y., Shih, M.H., Wu, C.Y., “Near-Fault Seismic Isolation Using Sliding Bearings with Variable Curvatures,” Proceedings of the 13th World Conference on Earthquake Engineering, August 1-6, Vancouver, BC, Canada, Paper no. 3264, 2004.
[24] Lu, L. Y., Lee, T. Y., Yeh, S. W., “Theory and experimental study for sliding isolators with variable curvature” Earthquake Engineering and Structural Dynamics, Vol. 40, No. 14, 1609-1627, 2011.
[25] 李姿瑩、盧煉元、曹哲瑋、洪文孝,「應用變頻式摩擦單擺支承於不等高橋墩橋梁之實驗」,中華民國第十四屆結構工程研討會暨第四屆地震工程研討會,民國107年11月24-26日,台中,台灣,2018。
[26] 陳奕翔,「含變頻滑動支承及抗拉拔裝置橋梁在水平雙向震波下之振動台實驗」,國立中央大學土木系碩士論文,2022。
[27] Ates, S., and Constantinou, M. C., “Example of application of response history analysis for seismically isolated curved bridges on drilled shaft with springs representing soil.” Soil Dynamics and Earthquake Engineering, 31(3), 334-350, 2011.
[28] Ates, S., and Constantinou, M. C., “Example of application of response spectrum analysis for seismically isolated curved bridges including soil-foundation effects.” Soil Dynamics and Earthquake Engineering, 31(4), 648-661, 2011.
[29] Kataria, N. P. and Jangid, R. S., “Seismic protection of the horizontally curved bridge with semi-active variable stiffness damper and isolation system.” Advances in Structural Engineering, 19(7), 1103-1117, 2016.
[30] Abdelnaby, A. E., Frankie, T. M., Elnashai, A. S., Spencer, B. F., Kuchma, D. A., Silva, P., et al., “Numerical and hybrid analysis of a curved bridge and methods of numerical model calibration.” Engineering Structures, 70, 234-245, 2014.
[31] Yan, L., Li, Q., Han, C., and Jiang, H., “Shaking table tests of curved bridge considering bearing friction sliding isolation.” Shock Vib., 2016, 1-14, 2014.
[32] Zhi, Z., Xiaojun, L., Riqing, L., and Chenning, S., “Shaking table tests and numerical simulations of a small radius curved bridge considering SSI effect.” Soil Dynamics and Earthquake Engineering, 118, 1-18, 2019.
[33] Chai, J. F. and C. H. Loh, “Near-fault ground motion and its effect on civil structures.” International workshop on mitigation of seismic effects on transportation structures, July 12-14, Taipei, Taiwan, R.O.C. 70-81, 2000.
[34] 葉超雄,「近斷層建築物設計地震力之研究」,921集集地震與建築物耐震技術研討會論文集,內政部建研所企劃,台北,1999年12月。
[35] Hall, J. F., T. H. Heaton, and M. W. Halling, D. J. Wald., “Near-source ground motions and its effects on flexible buildings.” Earthquake Spectra, 11, 569-605, 1995.
[36] Loh, C. H., “Interpretation of structural damage in 921 Chi-Chi-earthquake.” Proceedings of International Workshop on Chi-Chi, Taiwan Earthquake of September 21, 1999, Dec. 14-17, pp 5-1 ~ 5-77, 1999.
[37] Liao, W. I., C. H. Loh and S. Wan, “Responses of isolated bridges subjected to near-fault ground motions recorded on Chi-Chi earthquake.” International Workshop on Annual Commemoration of Chi-Chi Earthquake, Sep 18-20, Taipei, 371-380, 2000.
[38] Makris N. and Chang, S. P., “Effect of Damping Mechanisms on the Response of Seismically Isolated Structures.” Report No. PEER-98/06, Pacific Earthquake Engineering Research Center, College of Engineering, University of California, Berkeley, 1998.
[39] 張婉妮,「近斷層震波對滑動隔震結構之影響」,高雄第一科技大學營建工程系碩士論文,2001。
[40] Pranesh, M. and Sinha, R., “VFPI: an isolation device for aseismic design.” Earthquake Engineering and Structural Dynamics, 29(5), 603-627, 2000.
[41] Pranesh, M. and Sinha, R., “Earthquake Resistant Design of Structures using the Variable Frequency Pendulum Isolator.” Journal of Structural Engineering, ASCE, 128(7), 870-882, 2002.
[42] Pranesh, M. and Sinha, R., “Aseismic design of structure–equipment systems using variable frequency pendulum isolator” Nuclear Engineering and Design, 231(2), 129-139, 2004.
[43] Pranesh, M. and Sinha, R., “Behavior of structures isolated using VFPI during bear source ground motions.” 13th World Conference on Earthquake Engineering, Vancouver, Canada, No. 3105, 2004.
[44] 吳政彥,「變曲率滑動隔震結構之實驗與分析」,高雄第一科技大學營建工程系碩士論文,2004。
[45] 盧煉元,吳政彥,葉奕麟 ,「圓錐形摩擦單擺支承之隔震應用研究」結構工程,二十四卷,第二期,91-116頁,2009。
[46] Lu, L. Y., Shih, M. H., and Wu, C. Y., “Sliding isolation using variable frequency bearings for near-fault ground motions.” 4th International Conference on Earthquake Engineering, Taipei, Taiwan, No. 164, 2006.
[47] 王健,「變曲率滑動隔震防制近斷層震波之實驗與分析」,高雄第一科技大學營建工程系碩士論文,2006。
[48] 董佩宜,「應用多項式摩擦單擺支承之隔震橋梁研究」,國立中央大學土木系碩士論文,2010。
[49] Williams, D. and Godden, W., “Seismic response of long curved bridge: experimental model studies.” Earthquake Engineering and Structural Dynamics, 7(2), 107-128, 1979.
[50] Han, Q., Du, X., and Liu, J. et al., “Seismic damage of highway bridges during the 2008 Wenchuan earthquake” Earthq. Eng. Eng. Vib., 8(2), 263–73, 2009.
[51] Seo, J. and Linzell, D. G., “Horizontally curved steel bridge seismic vulnerability assessment.” Engineering Structures, 34(1), 21-32, 2012.
[52] Wilson, T., Mahmoud, H. and Chen, S., “Seismic performance of skewed and curved reinforced concrete bridges in mountainous states.” Engineering Structures, 70(3), 158-167, 2014.
[53] Tondini, N., and Stojadinovic, B., “Probabilistic seismic demand model for curved reinforced concrete bridge.” Bulletin of earthquake engineering, 10(5), 1455-1479, 2012.
[54] Lee, T.Y., Chung, K.J. and Chang, H., “A new procedure for nonlinear dynamic analysis of structures under seismic loading based on equivalent nodal secant stiffness, ” International Journal of Structural Stability and Dynamics, 18(3), 1850043, 2018.
[55] Lee, T.Y., Chung, K.J. and Chang, H., “A new implicit dynamic finite element analysis procedure with damping included.” Engineering Structures, 147, 530-544, 2017.
[56] 鍾昆潤,「非耦合隱式動力有限元素分析及其於結構崩塌分析之應用」,國立中央大學土木系博士論文,2018。
[57] Bathe, K. J. and Baig, M. M. I., “On a composite implicit time integration procedure for nonlinear dynamics “ Computers and Structures, 2005.
[58] Bathe, K. J., “Conserving energy and momentum in nonlinear dynamics:A simple implicit time integration scheme” Computers and Structures, 2007
[59] Bathe, K. J. and Noh, G. , “Insight into an implicit time integration scheme for structural dynamics” Computers and Structures, 2012
[60] 李姿瑩、盧煉元、陳奕翔、洪文孝,「含變頻式摩擦單擺支承與抗拉拔裝置橋梁之水平雙向振動台實驗」,中華民國力學學會第四十五屆全國力學會議,民國110年11月18-19日,新北市,台灣,2021。
[61] Zayas, V. A., Low, S. S., and Mahin, S. A., “A simple pendulum technique for achieving seismic isolation.” Earthquake Spectra, 6, 317-333, 1990.
[62] Anil K. Chopra, “Dynamics of Structures - Theory and Application to Earthquake Engineering.”4th Edition,Prentice-Hall, 174-180, 2011 .
[63] Przemieniecki, J. S., “Theory of matrix structural analysis”, Dover Publications, Inc. , New York, 2012.
[64] Noh, G., and Bathe, K. J., “Further insights into an implicit time integration scheme for structural dynamics.” Computers & Structures, 202, 15-24, 2018.
[65] 王聖文,「含結構阻尼之三維非線性動力歷時分析」,國立中央大學土木系碩士論文,2020。
[66] Constantinou, M.C., Mokha, A.M. and Reinhorn, A.M., “Teflon bearings in base isolation. Part 2: Modeling,” Journal of Structural Engineering, Vol. 116, No. 2, 455-474, 1990.
[67] Crisfield, M. A. and Moita, F. G., “A co-rotational formulation for 2-D continua including incompatible modes,” International Journal of Numerical Methods in Engineering. 39(15), 2619-2633, 1996.
[68] 王紹柔,「大尺度變曲率滑動隔震支承之理論與實驗研究」,國立成功大學土木系碩士論文,2020。
[69] Baker, J. W., Lin, T., Shahi, S. K., & Jayaram, N., “New ground motion selection procedures and selected motions for the PEER transportation research program.” PEER report, 3, 2011.
[70] 李姿瑩、盧煉元、黃麟翔、洪文孝,「應用含抗拉拔裝置變頻式摩擦單擺支承於橋梁之實驗」,中華民國第十五屆結構工程研討會暨第五屆地震工程研討會,民國109年9月2-4日,台南,台灣,2020。
[71] 林宜泓,「含變頻滑動支承不等高橋墩橋梁之最佳化設計」,國立中央大學土木系碩士論文,2022。
[72] 黃麟翔,「含變頻滑動支承及抗拉拔裝置之不等高橋梁實驗」,國立中央大學土木系碩士論文,2020。
[73] 王亮偉,「變曲率滑動隔震系統於三維震波作用下之實驗與理論研究」,國立成功大學土木系碩士論文,2016。
[74] 廖于婷,「考慮接頭連結效應之非線性構架動力分析」,國立中央大學土木系碩士論文,2022。
[75] 王俊清,「應用多項式摩擦單擺支承於橋梁之性能設計」,國立中央大學土木系碩士論文,2016。 |