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폼 분무 노즐 방사 분포 및 폼의 열적 특성 연구

Thermal Characteristics of Foams and Discharge of Fire-Protection Foam Spray Nozzle

  • 김홍식 (성균관대학교 대학원 기계공학부) ;
  • 김윤제 (성균관대학교 기계공학부)
  • 발행 : 2005.01.01

초록

A characteristic of discharge for a foam spray nozzle with various parameters was investigated. The discharge patterns from a fire foam spray nozzle are important to evenly spray over a maximum possible floor area. Two parameters of a foam spray nozzle were chosen, and compared with those from the standard one. Also, in order to evaluate the performance of discharged foam agents used to protect structures from heat and fire damages, the thermal characteristics of fire-protection foams were experimentally investigated. A simple repeatable test for fire-protection foams subjected to fire radiation was developed. This test involves foam generation equipment, a fire source for heat generation, and data acquisition techniques. Results show that the bubble size of foam is increased by large inside diameter of orifice or closed air hole, but phenomenon of discharge angle and expansion ratio is opposite. For the case of the open air hole, liquid film of a circular cone discharges with formation, growth, split and fine grain. In case of the closed air hole, a pillar of foam solution discharges with that. Though the temperature gradient in the foam increases with increased foam expansion ratio. it is not change with increased intensity of heat flux.

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참고문헌

  1. Colletti, D. J., 1994, 'Class A Foam: An Emerging Technology, Compressed-Air Foam Mechanics,' Fire Engineering, Vol. 147, No.3, pp. 61-66
  2. Madrzykowski, D., 1988, 'Study of the Ignition Inhibiting Properties of Compressed Air Foam,' NISTIR 88-3880, U. S. Department of Commerce, NIST, Gaithersburg, MD.
  3. Persson, H., 1992, 'Fire Extinguishing Foams Resistance Against Heat Radiation,' Proceedings of the 1st International Conference on Fire Suppression Research, Stockholm, Sweden, pp. 359-376
  4. Christopher, F. Boyd and Marino Di Marzo, 1998, 'The Behavior of a Fire-Protection Foam Exposed to Radiant Heating,' Int. J Heat and mass transfer, Vol. 41, No. 12,pp. 1719-1728 https://doi.org/10.1016/S0017-9310(97)00280-9
  5. ANSUL Fire Protection, 1990, 'Foam Systems Design and Applications.'
  6. KOFEIC, 1998, 'Standard of Performance/Test/Technique for Foam Spray Nozzle,' Notification of Ministry of Government Administration and Home Affairs, No. 1998-87
  7. Park, B. S. and Lee, S. Y., 1993, 'Experimental Study of Flash Atomization Mechanism,' Transactions of the KSME, Vol. 17, No.4, pp. 936-947