KJACR
Korean Journal of
Air-Conditioning and Refrigeration Engineering
SAREK
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ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
http://journal.auric.kr/kjacr
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Korean Journal of Air-Conditioning and Refrigeration Engineering
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Korean J. Air-Cond. Refrig. Eng.
Open Access, Monthly
Open Access
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ISSN : 1229-6422 (Print)
ISSN : 2465-7611 (Online)
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2017-07
(Vol.29 No.07)
10.6110/KJACR.2017.29.7.366
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REF
References
1
Hoad R., Radasky W. A., 2013, Progress in high-altitude electromagnetic pulse (HEMP) standardization, IEEE Transactions on Electromagnetic Compatibility, Vol. 55, No. 3, pp. 532-538
2
Matin W. D., 2009, Mitigation of EMP effects using shielded rooms and enclosures, Interference Technology EMC Directory & Design Guide.
3
White Donald R. J., Oh PK, 2013, EMP Protect Family, Homes & Community, Renewable energy creations, LLC, FL, USA.
4
Jha K. K., 2006, EMP generation mechanism and its destructive effect on C 3 I network, Electro Magnetic Interference and Compatibility (INCEMIC), 2006 Proceedings of the 9th International Conference on. IEEE.
5
Wilson P. F., Ma M. T., Adams J. W., 1988, Techniques for measuring the electromagnetic shielding effectiveness of materials. I. Far-field source simulation, IEEE Transactions on Electromagnetic Compatibility, Vol. 30, No. 3, pp. 239-250
6
D’Amore M., Sarto M. S., 2000, Theoretical and experimental characterization of the EMP-interaction with composite-metallic enclosures, IEEE transactions on electromagnetic compatibility, Vol. 42, No. 2, pp. 152-163
7
Bihua et al. , 2000, Experimental investigation of EMP shielding effectiveness of reinforced-concrete cell model, Environmental Electromagnetics, CEEM 2000. Proceedings, Asia-Pacific Conference on, IEEE, 2000.
8
Yang et al. , 2005, Electromagnetic interference shielding effectiveness of carbon nanofiber/LCP composites, Composites Part A : applied science and manufacturing, Vol. 36, No. 5, pp. 691-697
9
Wen S., Chung D. D. L., 2004, Electromagnetic interference shielding reaching 70 dB in steel fiber cement, Cement and Concrete Research, Vol. 34, No. 2, pp. 329-332
10
Rahaman M., Chaki T. K., Khastgir D., 2011, Development of high performance EMI shielding material from EVA, NBR, and their blends : effect of carbon black structure, Journal of Materials Science, Vol. 46, No. 11, pp. 3989-3999
11
Mazov et al. , 2009, Electromagnetic shielding properties of MWCNT/PMMA composites in Ka-band, physica status solidi(b), Vol. 246, No. 11-12, pp. 2662-2666
12
Standard M., 2005, High-Altitude Electromagnetic Pulse (HEMP) protection for ground-based C4I facilities performing critical, tine-urgent missions, Part 1 fixed facilities, MIL-STD-188-125., Vol. 1
13
Perez R., 2013, Handbook of electromagnetic compatibility, Academic Press.
14
Bereuter W. A., Chang D. C., 1982, Shielding effectiveness of metallic honeycombs, IEEE Transactions on Electromagnetic Compatibility, Vol. EMC-24, No. 1, pp. 58-61
15
Handbook A. S. H. R. A. E., 1996, HVAC systems and equipment, American Society of Heating, Refrigerating, and Air Conditioning Engineers, Atlanta, GA (1996).
16
ANSYS CFX-17.1 User Manual, 2016.