Inverse radiation problem of boundary incident radiation heat flux in semitransparent planar slab with semitransparent boundaries
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s11630-998-0009-x.pdf
Reference10 articles.
1. McCormick, N.J., “A Critique of Inverse Solutions to Slab Geometry Transport Problems,” Progress in Nuclear Energy, 8, pp.235–245, (1981).
2. McCormick, N.J., “Recent Developments in Inverse Scattering Transport Method,” Transport Theory and Statistical Physics, 13, pp.15–28, (1984).
3. McCormick, N.J., “Methods for Solving Inverse Problems for Radiation Transport-An Update,” Transport Theory and Statistical Physics, 15, pp.759–772, (1986).
4. McCormick, N.J., “Inverse Radiative Transfer Problems: A Review,” Nuclear Science and Engineering, 112, pp.185–198, (1992).
5. Fiveland, W.A., “Discrete Ordinate Methods for Radiative Heat Transfer in Isotropically and Anisotropically Scattering Media,” ASME Journal of Heat Transfer, 109, pp.809–812, (1987).
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