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@article{MM_2002_14_12_a0, author = {V. N. Popov and A. E. Kokh and P. V. Mokrushnikov}, title = {The dynamics of convective flows induced by a cyclically varying heat field in {BSO} solution-melt during crystal growth}, journal = {Matemati\v{c}eskoe modelirovanie}, pages = {3--10}, publisher = {mathdoc}, volume = {14}, number = {12}, year = {2002}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MM_2002_14_12_a0/} }
TY - JOUR AU - V. N. Popov AU - A. E. Kokh AU - P. V. Mokrushnikov TI - The dynamics of convective flows induced by a cyclically varying heat field in BSO solution-melt during crystal growth JO - Matematičeskoe modelirovanie PY - 2002 SP - 3 EP - 10 VL - 14 IS - 12 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/MM_2002_14_12_a0/ LA - ru ID - MM_2002_14_12_a0 ER -
%0 Journal Article %A V. N. Popov %A A. E. Kokh %A P. V. Mokrushnikov %T The dynamics of convective flows induced by a cyclically varying heat field in BSO solution-melt during crystal growth %J Matematičeskoe modelirovanie %D 2002 %P 3-10 %V 14 %N 12 %I mathdoc %U http://geodesic.mathdoc.fr/item/MM_2002_14_12_a0/ %G ru %F MM_2002_14_12_a0
V. N. Popov; A. E. Kokh; P. V. Mokrushnikov. The dynamics of convective flows induced by a cyclically varying heat field in BSO solution-melt during crystal growth. Matematičeskoe modelirovanie, Tome 14 (2002) no. 12, pp. 3-10. http://geodesic.mathdoc.fr/item/MM_2002_14_12_a0/
[1] Kokh A., “Crystal growth through forced stirring of melt or solution in Czochralski configuration”, J. Crystal Growth., 191:4 (1998), 774–778 | DOI
[2] Jafri I. H., Prasad V., Anselmo A. P., Cupta K. P., “Role of crusible partition in impruving $\mathrm{C}_z$ melt conditions”, J. Crystal Growth., 154 (1995), 280–292 | DOI
[3] Kervalishvili P. D., Remizov I. A., “O vozmozhnosti uluchsheniya peremeshivaniya rasplava pri vyraschivanii kristallov po metodu Chokhralskogo”, Neorganicheskie materialy, 16:10 (1989), 1727–1732
[4] Polezhaev V. I., “Matematicheskoe modelirovanie protsessov gidromekhaniki i teplomassoobmena pri vyraschivanii kristallov i razdelenii veschestv”, Gidromekhanika i teplomassoobmen pri poluchenii materialov, Nauka, M., 1990, 8–26
[5] Kokh A. E., Kononova N. G., Mokrushnikov P. V., “Upravlenie teplovym polem i protsessom konvektsii pri vyraschivanii kristallov”, Trudy IV Mezhd. konferentsii “Kristally: rost, svoistva, realnaya struktura, primenenie”, t. 1 (18–22 okt. 1999 g.), VNIISIMS, Aleksandrov, 234–256
[6] Kokh A. E., Kokh V. E, Kononova N. G., “Ustanovka dlya vyraschivaniya kristallov v usloviyakh vrascheniya teplovogo polya”, Pribory i Tekhnika Eksperimenta, 1 (2000), 157–160
[7] Kokh A. E., Kononova N. G., “Crystal growth under heat field rotation conditions”, Solid State Electronics, 44:5 (2000), 819–824 | DOI
[8] Kokh A. E., Popov V. N., Mokrushnikov P. W., “Numerical modeling of contact-free control over crystal growth heat-mass-transfer processes through heat field rotation”, J. of Crystal Growth., 230:1–2 (2001), 155–163 | DOI
[9] Roache P. J., Computational Fluid Dynamics, Hermosa, Albuquerque, NM, 1972 | MR
[10] Kokh A. E., Popov V. N., Mokrushnikov P. W., Ipatyeva O. S., “Contact-free generated forced convection through heat field rotation”, Proceedings Intern. Conf. “Advanced Computational Methods in Heat Transfer VI”, WIT Press, 2000, 117–126
[11] Win V. P., Incomplete factorization methods, World Scientific Publishing Co., Singapore, 1992
[12] Samarskii A. A., Nikolaev E. S., Metody reshenii setochnykh uravnenii, Nauka, M., 1978 | MR | Zbl
[13] Santos M. T., Rojo J. C., Arizmendi L., Dueguez E., “Changes in the solid-liquid interface during the growth of $\mathrm{Bi}_{12}\mathrm{SiO}_{20}$, $\mathrm{Bi}_{12}\mathrm{GeO}_{20}$ and $\mathrm{LiNbo}_3$ crystals growth by the Chochralski method”, J. Crystal Growth., 156 (1995), 413–420 | DOI