REDUCING SCATTERING TO NONSCATTERING PROBLEMS IN RADIATION HEAT TRANSFER.

Author(s) : LEE H., BUCKIUS R. O.

Type of article: Article

Summary

RADIANT HEAT FLUX CALCULATIONS IN PLANAR, ABSORBING, EMITTING, AND ISOTROPIC SCATTERING LAYERS ARE ACCURATELY REDUCED TO CALCULATIONS IN NONSCATTERING LAYERS BY THE SCALING LAWS, SQUARE ROOT AND LINEAR, ACCURATE FOR DIFFERENT COMBINATIONS OF OPTICAL DEPTH AND SINGLE SCATTERING ALBEDO. THE LINEAR SCALING APPLIES FOR THE OPTICALLY THIN AND THE HIGHLY SCATTERING. THE OTHER IS ACCURATE FOR ALL OTHERS. THE FLUX DISTRIBUTIONS IN INHOMOGENEOUS, NONISOTHERMAL LAYERS WHICH SCATTER ISOTROPICALLY ARE OBTAINED BY SOLVING MULTI-LAYERED PROBLEMS WITH EACH LAYER REDUCED TO A NONSCATTERING PROBLEM. ANISOTROPIC SCATTERING EFFECTS ARE EASILY INCLUDED.

Details

  • Original title: REDUCING SCATTERING TO NONSCATTERING PROBLEMS IN RADIATION HEAT TRANSFER.
  • Record ID : 1984-0893
  • Languages: English
  • Source: International Journal of Heat and Mass Transfer - vol. 26 - n. 7
  • Publication date: 1983/07

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