1. Amosov A.A.: Nonstationary nonlinear nonlocal problem of radiative- conductive heat transfer in a system of opaque bodies with properties depending on the radiation frequency. J. Math. Sci. 165(3), 1–41 (2010)
2. Amosov A.A.: Stationary nonlinear nonlocal problem of radiative-conductive heat transfer in a system of opaque bodies with properties depending on the radiation frequency. J. Math. Sci. 164(3), 309–344 (2010)
3. Cohen M.F., Wallace J.R.: Radiosity and Realistic Image Synthesis. Academic Press, Cambridge, MA, USA (1993)
4. Dupret F., Nicodéme P., Ryckmans Y., Wouters P., Crochet M.J.: Global modelling of heat transfer in crystal growth furnaces. Int. J. Heat Mass Transf. 33(9), 1849–1871 (1990)
5. Druet, P.-É.: Analysis of a coupled system of partial differential equations modeling the interaction between melt flow, global heat transfer and applied magnetic fields in crystal growth. Ph.D. thesis, Department of Mathematics, Humboldt University of Berlin, Germany, 2008, Available in pdf format at http://edoc.hu-berlin.de/dissertationen/druet-pierre-etienne-2009-02-05/PDF/druet.pdf