Browse > Article
http://dx.doi.org/10.12989/sem.2009.33.1.079

Spectral analysis of semi-actively controlled structures subjected to blast loading  

Ewing, C.M. (Department of Mechanical Engineering, University of Canterbury)
Guillin, C. (Department of Mechanical Engineering, University of Canterbury)
Dhakal, R.P. (Department of Civil Engineering, University of Canterbury)
Chase, J.G. (Department of Mechanical Engineering, University of Canterbury)
Publication Information
Structural Engineering and Mechanics / v.33, no.1, 2009 , pp. 79-93 More about this Journal
Abstract
This paper investigates the possibility of controlling the response of typical portal frame structures to blast loading using a combination of semi-active and passive control devices. A one storey reinforced concrete portal frame is modelled using non-linear finite elements with each column discretised into multiple elements to capture the higher frequency modes of column vibration response that are typical features of blast responses. The model structure is subjected to blast loads of varying duration, magnitude and shape, and the critical aspects of the response are investigated over a range of structural periods in the form of blast load response spectra. It is found that the shape or length of the blast load is not a factor in the response, as long as the period is less than 25% of the fundamental structural period. Thus, blast load response can be expressed strictly as a function of the momentum applied to the structure by a blast load. The optimal device arrangements are found to be those that reduce the first peak of the structural displacement and also reduce the subsequent free vibration of the structure. Semi-active devices that do not increase base shear demands on the foundations in combination with a passive yielding tendon are found to provide the most effective control, particularly if base shear demand is an important consideration, as with older structures. The overall results are summarised as response spectra for eventual potential use within standard structural design paradigms.
Keywords
structural control; semi-active device; blast loading; momentum; free vibration; shear stress; peak displacement; permanent deflection;
Citations & Related Records

Times Cited By Web Of Science : 0  (Related Records In Web of Science)
Times Cited By SCOPUS : 1
연도 인용수 순위
  • Reference
1 Barroso, L.R., Chase, J.G. and Hunt, S.J. (2003), "Resetable smart-dampers for multi-level seismic hazard mitigation of steel moment frames", J. Struct. Con., 10(1), 41-58.   DOI   ScienceOn
2 Bobrow, J.E., Jabbari, F. and Thai, K. (2000), "A new approach to shock isolation and vibration suppression using a resetable actuator", T. Dyn. Syst. Measurement Control, ASME, 122, 70-573.
3 Chase, J.G., Barroso, L.R. and Hunt, S.J. (2004), "The impact of total acceleration control for semi-active earthquake hazard mitigation", Eng. Struct., 26(2), 201-209.   DOI   ScienceOn
4 Chase, J.G., Mulligan, K.J., Gue, A., Alnot, T., Rodgers, G.W., Mander, J.B., Elliott, R.B., Deam, B.L., Cleeve, L. and Heaton, D. (2006), "Re-shaping hysteretic behaviour using semi-active resetable device dampers", Eng. Struct., 28(10), 1418-1429.   DOI   ScienceOn
5 Dhakal, R.P. and Pan, T.C. (2003), "Response characteristics of structures subjected to blasting-induced ground motion", Int. J. Impact. Eng., 28, 813-828.   DOI   ScienceOn
6 Hunt, S.J. (2002), Semi-active Smart-dampers and Resetable Actuators for Multi-level Seismic Hazard Mitigation of Steel Moment Resisting Frames, Masters Thesis, Department of Mechanical Engineering, University of Canterbury, Christchurch, New Zealand.
7 Mulligan, K.J., Chase, J.G., Gue, A., Alnot, T., Rodgers, G.W., Mander, J.B., Elliott, R.E., Deam, B.L., Cleeve, L. and Heaton, D. (2005), "Large scale resetable devices for multi-level seismic hazard mitigation of structures", Proc. 9th International Conference on Structural Safety and Reliability (ICOSSAR 2005), Rome, Italy, June 19-22, 8-pages, ISBN 90-5966-040-4.
8 Rodgers, G.W., Mander, J.B., Chase, J.G., Mulligan, K.J., Deam, B.L. and Carr, A.J. (2006a), "Re-shaping hysteretic behaviour using resetable devices to customise structural response and forces", 8th US National Conference on Earthquake Engineering (8NCEE), San Francisco, April 18-21, 10-pages.
9 Rodgers, G.W., Mander, J.B., Chase, J.G., Mulligan, K.J., Deam, B.L. and Carr, A.J. (2006b), "Re-shaping hysteretic behaviour - spectral analysis and design equations for semi-active structures", Earthq. Eng. Struct. Dyn., 36(1), 77-100.
10 Yong, L., Hao, H., Guowei, M. and Zhou, Y. (2001), "Simulation of structural response under high frequency ground excitation", Earthq. Eng. Struct. Dyn., 30, 307-325.   DOI   ScienceOn