과제정보
This research was supported by the project (Project no: GPMUB019-01) by Munzur University. In addition, the authors thank Prof. Dr. Ubeyde IPEK and Tunceli Gendarmerie Provincial Command for technical support.
참고문헌
- Alsubaei, F.C.F. (2015), "Performance of protective perimeter walls subjected to explosions in reducing the blast resultants on buildings", Electronic Thesis and Dissertation Repository; Western University, Canada.
- Cheng, W., Wenlong, X. and Steeve, C. (2018), "Penetration of shaped charge into layered and spaced concrete targets", Int. J. Impact Eng., 112, 193-206. https://doi.org/10.1016/j.ijimpeng.2017.10.013
- Defense, D.O.A. (2008), Design To Resist Direct Fire Weapons Effects, Patent: UFC 4-023-07, US, 2008.
- Dimitrieff, G. (1996), The poor man's RPG, ISBN 0-87947-154-9.
- Esteban, B., Lenhart, L.M., Rudiger, L. and Gebbeken, N. (2015), "An evaluation of shaped charge experiments using concrete components", Int. J. Protect. Struct., 6(3), 439-456. https://doi.org/10.1260/2041-4196.6.3.439
- Kay, H.C. (2008), "Analysis of shallowly buried reinforced concrete box structures subjected to airblast loads", Ph.D. Dissertation; University of Florida, FL, USA.
- Kojima, I. (1991), "An experimental study on local behaviour of reinforced concrete slabs to missile impact", Nuclear Eng. Des., 130(2), 121-132. https://doi.org/10.1016/0029-5493(91)90121-W
- Li, J., Wu, C. and Hao, H. (2016), "Spallation of reinforced concrete slabs under contact explosion", Proceedings of 2016 Second Asian Conference on Defence Technology (ACDT), Chiang Mai, Thailand, pp. 42-45. https://doi.org/10.1109/ACDT.2016.7437641
- Liew, J.Y.R. (2008), "Survivability of steel frame structures subject to blast and fire", J. Constr. Steel Res., 64(7-8), 854-866. https://doi.org/10.1016/j.jcsr.2007.12.013
- Luccioni, B.M. and Ambrosini, R.D. (2010), "Numerical assessment of blast effects scaling procedures", Associacion Argentina de Mecanica Computacional, 29(12), 1161-1179. ISSN 2591-3522
- Murphy, M.J., Baum, D.W., Kuklo, R.M. and Simonson, S.C. (2001), "Effect of multiple and delayed jet impact and penetration on concrete target borehole diameter", Proceedings of the 19th International Symposium on Ballistics, Interlaken, Switzerland, May.
- Ngo, T., Mendis, P., Gupta, A. and Ramsay, J. (2007), "Blast loading and blast effects on structures - an overview", Electron. J. Struct. Special Issue: Loading on Structures, 76-90. https://doi.org/10.56748/ejse.671
- Savas, S. and Bakir, D. (2023), "An investigation of the effects of the vehicle terror suicide attack in the urban area", Eng. Fail. Anal., 145, 107049. https://doi.org/10.1016/j.engfailanal.2023.107049
- TM 5-1300 (1990), Structures to Resist the Effects of Accidental Explosion, Departments of the Army, the Navy and the Air Force, TM 5-1300, NAVFACP-379, AFR 88-22.
- Wang, F., Kong, Y., Wan, M., Yi, O., Chong, K., Lim, C., Tze, E. and Lim, M. (2008), "Reinforced Concrete Slab Subjected to Close-in Explosion", Defense Science and Technology Agency, Bamberg.
- Xu, X.Z. and Ma, T.B. and Ning, J.G. (2017), "The damage and failure mechanism of the concrete subjected to shaped charge loading", Eng. Fail. Anal., 82, 741-752. https://doi.org/10.1016/j.engfailanal.2017.06.031
- Yap, C.H. (2012), "The Impact of Armor on The Design, Utilization and Survivability of Ground Vehicles: The History of Armor Development and Use, California", Master's Thesis, Naval Postgraduate School Monterey.