@article{ZVMMF_1997_37_11_a11,
author = {I. V. Fryazinov},
title = {Boundary conditions for radiative heat transfer in monocrystal growth in processes in ampules. {II.~A} semitransparent quartz ampule, {Bridgman's} method, and the traveling-heater method},
journal = {\v{Z}urnal vy\v{c}islitelʹnoj matematiki i matemati\v{c}eskoj fiziki},
pages = {1384--1398},
year = {1997},
volume = {37},
number = {11},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/ZVMMF_1997_37_11_a11/}
}
TY - JOUR AU - I. V. Fryazinov TI - Boundary conditions for radiative heat transfer in monocrystal growth in processes in ampules. II. A semitransparent quartz ampule, Bridgman's method, and the traveling-heater method JO - Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki PY - 1997 SP - 1384 EP - 1398 VL - 37 IS - 11 UR - http://geodesic.mathdoc.fr/item/ZVMMF_1997_37_11_a11/ LA - ru ID - ZVMMF_1997_37_11_a11 ER -
%0 Journal Article %A I. V. Fryazinov %T Boundary conditions for radiative heat transfer in monocrystal growth in processes in ampules. II. A semitransparent quartz ampule, Bridgman's method, and the traveling-heater method %J Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki %D 1997 %P 1384-1398 %V 37 %N 11 %U http://geodesic.mathdoc.fr/item/ZVMMF_1997_37_11_a11/ %G ru %F ZVMMF_1997_37_11_a11
I. V. Fryazinov. Boundary conditions for radiative heat transfer in monocrystal growth in processes in ampules. II. A semitransparent quartz ampule, Bridgman's method, and the traveling-heater method. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 37 (1997) no. 11, pp. 1384-1398. http://geodesic.mathdoc.fr/item/ZVMMF_1997_37_11_a11/
[1] Marchenko M. P., Fryazinov I. V., “Kraevye usloviya teploobmena izlucheniem v protsessakh vyraschivaniya monokristallov v ampulakh. Ch. 1. Neprozrachnaya ampula”, Zh. vychisl. matem. i matem. fiz., 37:9 (1997), 1143–1152 | Zbl
[2] Zigel Z., Khauell Dzh., Teploobmen izlucheniem, Mir, M., 1975
[3] Zeldovich Ya. B., Raizer Yu. P., Fizika udarnykh voln i vysokotemperaturnykh gazodinamicheskikh yavlenii, Nauka, M., 1966
[4] Men A. A., Sergeev O. A., “Teplofizicheskie svoistva plavlennogo kvartsa i luchistaya sostavlyayuschaya teploperenosa”, Dokl. AN SSSR, 203:6 (1972), 1272–1274
[5] Sergeev O. A., Settarova Z. S., “Issledovanie temperaturnoi zavisimosti koeffitsienta pogloscheniya nekotorykh poluprozrachnykh materialov”, Tr. metrol. in-tov SSSR. Issl. v oblasti teplovykh izmerenii, 129(189), M.-L., 1971, 260–266
[6] Avakova I. G., Sergeev O. A., “Teplofizicheskie svoistva stekol”, Tr. metrol. in-tov SSSR. Issl. v oblasti teplovykh izmerenii, 129(189), M.-L., 1971
[7] Settarova Z. S., Sergeev O. A., Nikolaeva Z. D., “Temperaturnaya zavisimost koeffitsienta pogloscheniya nekotorykh kvartsevykh stekol”, Teplofiz. vysokikh t-r, 10:3 (1972), 640–464
[8] Steklo kvartsevoe opticheskoe, Tekhn. usloviya. GOST 15130-79. Gos. komitet SSSR po standartam, M., 1980
[9] Lyumkis E. D., Martuzan B. Ya., Martuzane E. N., Senchenkov A. S., “Matematicheskaya model teploperenosa pri zonnoi plavke”, Prikl. zadachi matem. fiz., Latviiskii gos. un-t, Riga, 1989, 1–8