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Numerical study of a coating with pigment to selectively reflect the thermal radiation from fire

화염 열복사의 파장별 선택적 반사를 위한 도료 코팅에 대한 수치적 연구

  • Byeon, Do-Yeong (Dept. of Aerospace Engineering, Korea Advanced Institute of Science and Technology) ;
  • Baek, Seung-Uk (Dept. of Aerospace Engineering, Korea Advanced Institute of Science and Technology)
  • 변도영 (한국과학기술원 항공우주공학과) ;
  • 백승욱 (한국과학기술원 항공우주공학과)
  • Published : 1998.03.01

Abstract

The infrared reflection coatings with pigment can be used to protect the surfaces of combustible materials exposed to fire. To obtain high reflectivities in the infrared range (0.5-10.mu.m) important to fire, several dielectric pigments, such as titanium dioxide, iron oxide, and silicon, can be synthesized to polymer coatings. The theoretical analysis shows that the coating design with particles diameter in the 1.5 to 2.5.mu.m range and volume fraction in the 0.1 to 0.2 range is estimated to be optimal. In the analysis of the radiation, the dependent scattering, absorption by polymeric binder, and the internal interface reflection are considered. In addition, the temperature distribution in the semi-transparent coating layer and an opaque substrate (PMMA) is also presented.

Keywords

References

  1. Combustion Science and Technology v.39 A Perspective on Compartment Fire Growth Quintiere, J.
  2. Paint Properties and Their Evaluation, in Surface Coatings: Science and Technology Paul, S.;Paul, S.(ed.)
  3. Bulletin of JSME v.22 no.173 Theoretical Study on Radiative Properties of a Painted Layer Containing Spherical Pigment Kumitomo, T.;Shafey, H. M.;Teramoto, T.
  4. Journal of Heat Transfer v.117 Pigments to Reflect the Infrared Radiation from Fire Berdahl, P.
  5. Annual Review of Numerical Fluid Mechanics and Heat Transfer v.1 Thermal Radiation in particulate media With Dependent and Independent Scaftering Tien, C. L.;Drolen, B. L., aut.;Chawla, T. C., ed.
  6. AIAA Journal v.9 no.10 Optical properties of Coatings. Effect of Pigment Concentration Hottel, H. C.;Sarofim, A. F.;Dazell, W. H.;Vasalos, I. A.
  7. Journal of Heat Transfer v.104 Radiative Transfer in Packed Fluidized Beds: Dependent Versus Independent Scattering Brewster, M. Q.;Tien, C. L.
  8. Numerical Heat Transfer, Part A. v.29 Numerical Analysis of Conduction, Convection, and Radiation in a Gradually Expanding Channel Kim, M. Y.;Baek, S. W.
  9. Absorption and Scattering of Light by Small Particles Bohren, C. F.;Huffman, D. R.
  10. Journal of Heat Transfer v.115 Refractive Index Effects on Radiation in an Absorbing, Emitting, and Scattering Laminated Layer Siegel, R.;Spukler, C. M.
  11. American Institute of Physics Handbook, Third ed.
  12. Combustion and Flame v.34 Experimental Observation of Radiative Ignition Mechanisms Kashiwagi, T.
  13. International Journal of Heat mass Transfer v.33 no.7 Radiation Induced Ignition of Solid Fuels Park, S. H.;Tien, C. L.
  14. Transport Phenomena in materials processing Poirien, D. R.;Geiger, G. H.