Journal of Engineering and Applied Sciences

Year: 2017
Volume: 12
Issue: 5
Page No. 1092 - 1096

A Fire Protection System with Thermo-Sensitive Tube by One Cylinder for Two Switchboards

Authors : Kyung-Jin Jin and Ha-Sung Kong

References

Choo, K.L. and P.J. Yew, 2015. Design of arc fault temperature detector in low voltage switchboard. Indian J. Sci. Technol., 8: 1-6.
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Kyung, J.J., 2013. The fire protection system for switchboards using automatic fire extinguishers for small space: Focusing on the indirect spray extinguishing method for thermo-sensitive tubes. Masters Thesis, Kyungil University, Gyeongsan, South Korea.

Land, H.B. and T. Gammon, 2014. Addressing arc flash problems in low voltage switchboards: A case study in arc fault protection. Proceedings of the 2014 IEEE/IAS 50th Conference on Industrial and Commercial Power Systems Tehcnical (I&CPS), May 20-23, 2014, IEEE, New York, USA., ISBN:978-1-4799-3310-5, pp: 1-12.

Lee, C.J., D.S. Kang, D.S. Kim and J.H. Kwak, 2006. A study on the development of fire extinguishing system for machinery spaces of a small craft. Korean Soc. Mar. Eng. Conf. Proc., 1: 127-128.

Lee, C.W., 2015. Auto fire extinguishing system for distributing board. J. Korean Inst. Fire Invest., 6: 67-67.

Park, C.E., K.D. Kim, S.C. Lee and W.Y. Yang, 2006. Implementation of a inference based intelligent distribution panel system for prevention and fast detection of fire caused by electricity. J. Korean Inst. Illum. Electr. Installation Eng., 1: 82-82.

Park, Y.H., B.K. Kim and S.M. Lee, 2009. Fire extinguishing performance of condensed aerosol extinguisher on the B or C class fire in a small cabinet. Fire Sci. Eng., 1: 139-139.

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