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2022 Vol.35, Issue 4 Preview Page

Research Paper

31 August 2022. pp. 207-214
Abstract
References
1
Autodyn, ANSYS (2005) Theory Manual Revision 4.3., Century Dynamics, Concord, CA.
2
Center, P.D. (2008) Single Degree of Freedom Structural Response Limits for Anti-Terrorism Design, PDC TR-06-08, Omaha, NE: US Army Corps of Engineers.
3
Dalton, J., Gott, J., Parker, P., McAndrew, M., Bowling, C. (2008) Unified Facilities Criteria: Structures to Resist the Effects of Accidental Explosions(UFC 3-340-02), US Department of Defense, Washington, DC.
4
Department of the Army (1959) Design of structures to Resist of the Effects of Atomic Weapons: Weapons Effects Data, Army Technical Manual(TM 5-856-1). Washington, DC: Dept. of the Army.
5
Dobratz, B.M., Crawford, P.C. (1985) LLNL Explosive Handbook, Properties of Chemical Explosives and Explosive Simulants, Rep. No.UCRL-52997. Livermore, CA: Lawrence Livermore National Laboratory.
6
Dragos, J., Wu, C. (2013) A New Approach to Derive Normalized Pressure Impulse Curves, Int. J. Impact Eng., 62, pp.1~12. 10.1016/j.ijimpeng.2013.05.005
7
Hou, X., Cao, S., Rong, Q., Zheng, W. (2018) A P-I Diagram Approach for Predicting Failure Modes of RPC One-Way Slabs Subjected to Blast Loading, Int. J. Impact Eng., 120, pp.171~184. 10.1016/j.ijimpeng.2018.06.006
8
Kinney, G.F., Graham, K.J. (1985) Explosive Shocks in Air, 2nd ed., Springer, New York. 10.1007/978-3-642-86682-1
9
Liu, Y., Yan, J., Huang, F. (2018) Behavior of Reinforced Concrete Beam and Columns Subjected to Blast Loading, Def. Technol., 14(5), pp.550~559. 10.1016/j.dt.2018.07.026
10
Morison, C.M. (2006) Dynamic Response of Walls and Slabs by Single-Degree-of-Freedom Analysis-a Critical Review and Revision, Int. J. Impact Eng., 32(8), pp.1214~1247. 10.1016/j.ijimpeng.2004.11.008
11
Nartu, M.K., Kumar, M.K. (2020) Blast Response of Single- Degree-of-Freedom System Including Fluid-Structure Interaction, J. Struct. Eng., 147(1), pp.1~14. 10.1061/(ASCE)ST.1943-541X.0002878
12
Norris, C.H., Hansen, R.J., Holley, M.J., Biggs, J. M., Namyet, S., Minami, J.K. (1959) Structural Design for Dynamic Loads, McGraw-Hill, New York.
13
Oswald, C., Bazn, M. (2014) Comparison of SDOF Analysis Results to Test Data for Different Types of Blast Loaded Components, Structures Congress, Boston, Massachusetts, pp.117~130. 10.1061/9780784413357.012
14
Rickman, D.D., Murrell, D.W. (2007) Development of an Improved Methodology for Predicting Airblast Pressure Relief on a Directly Loaded Wall, J. Press. Vessel Technol., 129(1), pp.195~204. 10.1115/1.2409317
15
Rigby, S.E., Tyas, A., Bennett, T., Fay, S.D., Clarke, S.D., Warren, J.A. (2014) A Numerical Investigation of Blast Loading and Clearing on Small Targets, Int. J. Prot. Struct., 5(3), pp.253~274. 10.1260/2041-4196.5.3.253
16
Rigby, S.E., Tyas, A., Clarke, S.D., Razaqpur, G. (2017) Approach to Developing Design Charts for Quantifying the Influence of Blast Wave Clearing on Target Deformation, J. Struct. Eng., 143(1), 04016150. 10.1061/(ASCE)ST.1943-541X.0001626
17
Shin, J., Whittaker, A.S. (2019) Blast-Wave Clearing for Detonations of High Explosives, J. Struct. Eng., 145(7), 04019049. 10.1061/(ASCE)ST.1943-541X.0002327
18
Smith, P.D., Hetherington, J.G. (1994) Blast and Ballistic Loading of Structures, Oxford, UK: Butterworth-Heinemann.
19
Sung, S., Chong, J. (2020) A Fast-Running Method for Blast Load Prediction Shielding by a Protective Barrier, Def. Technol., 16(2), pp.308~315. 10.1016/j.dt.2019.07.011
20
Tyas, A., Warren, J.A., Bennett, T., Fay, S. (2011) Prediction of Clearing Effects in Far-Field Blast Loading of Finite Targets, Shock Waves, 21(2), pp.111~119. 10.1007/s00193-011-0308-0
Information
  • Publisher :Computational Structural Engineering Institute of Korea
  • Publisher(Ko) :한국전산구조공학회
  • Journal Title :Journal of the Computational Structural Engineering Institute of Korea
  • Journal Title(Ko) :한국전산구조공학회 논문집
  • Volume : 35
  • No :4
  • Pages :207-214
  • Received Date : 2022-04-27
  • Revised Date : 2022-07-19
  • Accepted Date : 2022-07-22
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