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http://dx.doi.org/10.12989/sem.2020.74.2.201

Performance evaluation of composite moment-frame structures with seismic damage mitigation systems using wavelet analyses  

Kaloop, Mosbeh R. (Department of Civil and Environmental Engineering, Incheon National University)
Son, Hong Min (Department of Civil and Environmental Engineering, Incheon National University)
Sim, Hyoung-Bo (Department of Civil and Environmental Engineering, Incheon National University)
Kim, Dongwook (Department of Civil and Environmental Engineering, Incheon National University)
Hu, Jong Wan (Department of Civil and Environmental Engineering, Incheon National University)
Publication Information
Structural Engineering and Mechanics / v.74, no.2, 2020 , pp. 201-214 More about this Journal
Abstract
This study aims at evaluating composite moment frame structures (CFS) using wavelet analysis of the displacement behavior of these structures. Five seismic damage mitigation systems' models of 9-story CFS are examined namely, basic (Model 1), reinforced (Model 2), buckling restrained braced (BRB) (Model 3), lead rubber bearing (LRB) (Model 4), and composite (Model 5) moment frames. A novel integration between continuous and discrete wavelet transforms is designed to estimate the wavelet power energy and variance of measurements' behaviors. The behaviors of the designed models are evaluated under influence of four seismic loads to study the dynamic performance of CFS in the frequency domain. The results show the behaviors of models 3 and 5 are lower than other models in terms of displacement and frequency performances. Model 3 has been shown lower performances in terms of energy and variance wavelets along the monitoring time; therefore, Model 3 demonstrates superior performance and low probability of failure under seismic loads. Furthermore, the wavelet variance analysis is shown a powerful tool that can be used to assess the CFS under seismic hazards.
Keywords
composite frame; wavelet; dynamic analysis; seismic;
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Times Cited By KSCI : 9  (Citation Analysis)
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1 Seo, J. and Hu, J. (2016) "Seismic Response and Performance Evaluation of Self-Centering LRB Isolators Installed on the CBF Building under NF Ground Motions", Sustainability, 8(2), 109. https://doi.org/10.3390/su8020109.   DOI
2 Shallan, O., Maaly, H. and Hamdy, O. (2018), "A developed design optimization model for semi-rigid steel frames using teaching-learning-based optimization and genetic algorithms", Struct. Eng. Mech., 66(2), 173-183. https://doi.org/10.12989/sem.2018.66.2.173.   DOI
3 Shi, G., Yin, H. and Hu, F. (2018), "Experimental study on seismic behavior of full-scale fully prefabricated steel frame: Global response and composite action", Eng. Struct., 169, 256-275. https://doi.org/10.1016/j.engstruct.2018.05.052.   DOI
4 De Stefano, A., Matta, E. and Clemente, P. (2016), "Structural health monitoring of historical heritage in Italy: some relevant experiences", J. Civil Struct. Health Monitoring, 6(1), 83-106. https://doi.org/10.1007/s13349-016-0154-y.   DOI
5 Sun, Z. (2002), "Structural damage assessment based on wavelet packet transform", J. Struct. Eng., 128, 1354.   DOI
6 Taha, M. M. R. (2006) "Wavelet Transform for Structural Health Monitoring: A Compendium of Uses and Features", Struct. Health Monitoring, 5(3), 267-295. https://doi.org/10.1177/1475921706067741.   DOI
7 Torrence, C. and Compo, G. P. (1998), "A Practical Guide to Wavelet Analysis", Bullet. American Meteorological Soc., 79(1), 62-78.
8 Xiaoyan, M., Junquan, Y. and Linguang, X. (2000), "Signal reconstruction based on mean threshold wavelet packet de-noising", WCC 2000 - ICSP 2000. 2000 5th International Conference on Signal Processing Proceedings. 16th World Computer Congress 2000, https://doi.org/10.1109/ICOSP.2000.894515.
9 Xing, L., Huang, L., Chi, G., Yang, L., Li, C. and Hou, X (2018), "A Dynamic Study of a Karst Spring Based on Wavelet Analysis and the Mann-Kendall Trend Test", Water, 10, 698. https://doi.org/10.3390/w10060698.   DOI
10 Chan, Y. T. (1995), "Wavelet Basics", Transform, 99(2), Springer, Germany. 1-26.
11 Farzampour, A., Kamali-Asl, A. and Hu, J.W. (2018a), "Unsupervised identification of arbitrarily-damped structures using time-scale independent component analysis: Part I", J. Mech. Sci. Technol., 32(2), 567-577. https://doi.org/10.1007/s12206-018-0104-6.   DOI
12 Chen, X. and Gao, Z. (2011), "Data Processing Based on Wavelet Analysis in Structure Health Monitoring System", J. Comput., 6(12), 2686-2691. https://doi.org/10.4304/jcp.6.12.2686-2691.
13 Chouinard, L., Shahsavari, V. and Bastien, J (2019), "Reliability of Wavelet Analysis of Mode Shapes for the Early Detection of Damage in Beams", Front. Built Environ., 5, 91. https://doi.org/10.3389/fbuil.2019.00091.   DOI
14 Farrokhi, H., Danesh, F. and Eshghi, S. (2010), "The structural detailing effect on seismic behavior of steel moment resisting connections", Struct. Eng. Mech., 35(5), 617-630. https://doi.org/10.12989/sem.2010.35.5.617.   DOI
15 Farzampour, A., Kamali-Asl, A. and Hu, J.W. (2018b), "Unsupervised identification of arbitrarily-damped structures using time-scale independent component analysis: Part II", J. Mech. Sci. Technol., 32(9), 4413-4422. https://doi.org/10.1007/s12206-018-0104-6.   DOI
16 Hu, J. W. (2015), "Seismic analysis and evaluation of several recentering braced frame structures", J. Mech. Eng. Sci., 228(5), 781-798. https://doi.org/10.1177%2F0954406213490600.
17 Hu, J., Kang, Y., Choi, D. and Park, T. (2010), "Seismic Design, Performance, and Behavior of Composite-Moment Frames with Steel Beam-to-Concrete Filled Tube Column Connections", J. Steel Struct., 10(2), 177-191. https://doi.org/10.1007/BF03215829.   DOI
18 Hu, J. and Choi, E. (2014), "Seismic Design, Nonlinear Analysis, and Performance Evaluation of Recentering Buckling-restrained Braced Frames (BRBFs)", J. Steel Struct., 14(4), 683-695. https://doi.org/10.1007/s13296-014-1201-3.   DOI
19 Hu, J. and Roberto, L. (2011), "Analyses and evaluations for composite-moment frames with SMA PR-CFT connections", Nonlinear Dyn., 65, 433-455. https://doi.org/10.1007/s11071-010-9903-3.   DOI
20 Hu, J. W. (2008), "Seismic Performance Evaluations and Analyses for Composite Moment Frames with Smart SMA PR-CFT Connections", Ph.D. Dissertation, Georgia Institute of Technology, U.S.A. http://hdl.handle.net/1853/22655.
21 Iliuk, Itamar, Jose M. Balthazar, Angelo M. Tusset, Vinicius Piccirillo, Reyolando MLRF Brasil, and Jose RC Piqueira (2014), "The Use of Wavelets Analysis to Characterize the Dynamic Behavior of Energy Transfer vibrational systems", Proceedings of the ASME 2014 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference IDETC/CIE 2014, DETC2014-34266. https://doi.org/10.1115/DETC2014-34266.
22 Jemai, S., Ellouze, M. and Abida, H. (2017), "Variability of Precipitation in Arid Climates Using the Wavelet Approach: Case Study of Watershed of Gabes in South-East Tunisia", Atmosphere, 8, 178. https://doi.org/10.3390/atmos8090178.   DOI
23 Li, S., Zhang, L., Tang, J., Ling, D., and Wang, P. (2018), "Damage Identification in Timber Structures Based on Wavelet Singular Spectrum Entropy", Math. Problem Eng., 2018, (Article-ID-4898903), 9.
24 Kim, D.-H. and Leon, R. T. (2007), "Seismic Performance of PR Frames in Mid-America Earthquake Region", J. Structu. Eng., 133(12), 1808-1820. https://doi.org/10.1061/(ASCE)0733-9445(2007)133:12(1808).   DOI
25 Kaloop, M. R., Hu, J. W., Sayed, M. A. and Seong, J. (2016), "Structural Performance Assessment Based on Statistical and Wavelet Analysis of Acceleration Measurements of a Building during an Earthquake", Shock Vib., 2016. https://doi.org/10.1155/2016/8902727.
26 Kaloop, M. R. and Hu, J. W. (2016), "Damage Identification and Performance Assessment of Regular and Irregular Buildings Using Wavelet Transform Energy", Advances in Materials Science and Engineering, 2016. https://doi.org/10.1155/2016/6027812.
27 Kijewski, T. and Kareem, A. (2003), "Wavelet Transforms for System Identification in Civil Engineering", Comput. Aided Civil Infrastruct. Eng., 18(5), 339-355. https://doi.org/10.1111/1467-8667.t01-1-00312.   DOI
28 Lee, S., Noh, S. and Lee, D. (2018), "Evaluation of Progressive Collapse Resistance of Steel Moment Frames Designed with Different Connection Details Using Energy-Based Approximate Analysis", Sustainability, 10, 3797. https://doi.org/10.3390/su10103797.   DOI
29 Mansouri, I., Hu, J. W., Shakeri, K., Shahbazi, S. and Nouri, B. (2017), "Assessment of Seismic Vulnerability of Steel and RC Moment Buildings Using HAZUS and Statistical Methodologies", Discrete Dynam. Nature Society, 2017. https://doi.org/10.1155/2017/2698932.
30 Mansouri, I., Ghodrati Amiri, G., Hu, J. W., Khoshkalam, M., Soori, S. and Shahbazi, S. (2017), "Seismic Fragility Estimates of LRB Base Isolated Frames Using Performance-Based Design", Shock Vib., 2017, https://doi.org/10.1155/2017/5184790.
31 Mansouri, I., Soori, S., Amraie, H., Hu, J. and Shahbazi, S. (2018), "Performance based design optimum of CBFs using bee colony algorithm", Steel Compos. Struct., 27(5), 613-622. https://doi.org/10.12989/scs.2018.27.5.613.   DOI
32 Min, S. H. (2017) "Probabilistic Seismic Performance Evaluation of Composite Moment Frame Structures with Seismic Damage Mitigation Systems". Ph.D. Thesis, Incheon National University, South Korea.
33 Matarazzo, T. J., Kurata, M., Nishino, H. and Suzuki, A. (2018), "Postearthquake Strength Assessment of Steel Moment-Resisting Frame with Multiple Beam-Column Fractures Using Local Monitoring Data", J. Struct. Eng., 144(2). https://doi.org/10.1061/(ASCE)ST.1943-541X.0001967.
34 Mehanny, S. and Deierlein, G. (2000), "Assessing seismic performance of composite (RCS) and steel moment framed buildings", Proceedings, 12th World Conference on Earthquake Engineering, http://www.iitk.ac.in/nicee/wcee/article/0746.pdf.
35 Mehanny, S. S. F. and Deierlein, G. G. (2001), "Seismic damage and collapse assessment of composite moment frames", J. Struct. Eng., 127, 1045-1053. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:9(1045).   DOI
36 Park, T., Hwang, W. S., Leon, R. T. and Hu, J. W. (2011) "Damage evaluation of composite-special moment frames with concrete-filled tube columns under strong seismic loads", KSCE Journal of Civil Engineering, 15(8), 1381-1394. https://doi.org/10.1007/s12205-011-1225-6.   DOI
37 Rhee, J., Chang, D. and Hu, S. (2012) "Advanced Analysis of Connections to Concrete-Filled Steel Tube Columns using the 2005 AISC Specification", J. Korean Soc. Adv. Compos. Struct., 3(3), 9-21. https://doi.org/10.11004/kosacs.2012.3.3.009.   DOI
38 Rioul, O. and Vetterli, M. (1991), "Wavelets and Signal Processing", IEEE Signal Processing Magazine, 8(4), 14-38, https://doi.org/10.1109/79.91217.   DOI
39 Sayed, M. A., Kaloop, M. R., Kim, E. and Kim, D. (2017), "Assessment of Acceleration Responses of a Railway Bridge using Wavelet Analysis", KSCE Journal of Civil Engineering, 21(5), 1844-1853. https://doi.org/10.1007/s12205-016-1762-0.   DOI