Three-dimensional numerical simulation of temperature and flow fields in a Czochralski growth of germanium

سال انتشار: 1397
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 95

فایل این مقاله در 10 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_JHMTR-5-1_006

تاریخ نمایه سازی: 24 شهریور 1403

چکیده مقاله:

For a Czochralski growth of Ge crystal, thermal fields have been analysed numerically using the three-dimensional finite volume method (FLUENT package). The arrangement used in a real Czochralski crystal growth lab included a graphite crucible, heat shield, heating device, thermal insulation and chamber including two gas outlets. We have considered two cases for calculations, which are configuration containing (a) only gas and (b) melt and gas, related to initial stages of the growth process (seeding process). It has been assumed that the growth system is in steady state, fluids are incompressible Newtonian fluids and the flow is laminar. It was shown that the thermal field in the growth setup is completely three-dimensional. Especially, the temperature field at the melt free surface has not a uniform radial distribution due to the three-dimensional orientation of Argon flow above it.

نویسندگان

M.H. Tavakoli

Physics Department, Bu-Ali Sina University

Zahra Taheri Ghahfarokhi

Physics Department, Bu-Ali Sina University

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • N. Kobayashi, Computational simulation of the melt flow during Czochralski ...
  • N. Kobayashi, Hydrodynamics in Czochralski growth-computer analysis and experiments, J. ...
  • T. Tsukada, N. Imaishi and M. Hotawa, Theoretical study of ...
  • J.J. Derby, L. J. Atherton and P. M. Gresho, An ...
  • J.J. Derby and Q. Xiao, The role of internal radiation ...
  • J.J. Derby and Q. Xiao, Heat transfer and interface inversion ...
  • T. Tsukada, N. Imaishi and M. Hozawa, Global analysis of ...
  • J. Järvinen, R. Nieminen and T. Tiihonen, Time-dependent simulation of ...
  • E. Dornberger, E. Tomzig, A. Seidl, S. Schmitt, H.J. Leister, ...
  • G. Muller, A. Muhe, R. Backofen, E. Tomzig and W. ...
  • C.J. Jing, N. Imaishi, S. Yasuhiro and Y. Miyazawa, Three ...
  • C.J. Jing, N. Imaishi, T. Sato and Y. Miyazawa, Three-dimensional ...
  • A. Lipchin and R.A. Brown, Hybrid finite-volume/finite-element simulation of heat ...
  • Z. Galazka and H. Wilke, Influence of the Marangoni convection ...
  • K. Takano, Y. Shiraishi, J. Matsubara, T. Iida, N. Takase, ...
  • S. Enger, O. Grabner, G. Muller, M. Breuer and F. ...
  • V.V. Kalaev, I.Y. Evstratov and Y.N. Makarov, Gas flow effect ...
  • V.V. Kalaev, D.P. Lukanin and V.A. Zabelin, Prediction of bulk ...
  • N.G. Ivanov, A.B. Korsakov and E.M. Smirnov, Analysis of magnetic ...
  • A.J. Nowak, R. Biaecki, A. Fic and G. Wecel, Analysis ...
  • T. Wetzel, J. Virbulis, A. Muiznieks, W. von Ammon, E. ...
  • L. You Rong, R. Dengfang and P. Lan, Global simulation ...
  • L. Liu, T. Kitashima and K. Kakimoto, Global analysis of ...
  • S. Shufang, Z. Qingli and S. Jing, Research Progress in ...
  • J. Banerjee and K. Muralidhar, Simulation of transport processes during ...
  • V.V. Kalaev, Combined effect of DC magnetic field and free ...
  • M.H. Tavakoli and H. Wilke, Numerical study of heat transport ...
  • M.H. Tavakoli and H. Wilke, Numerical investigation of heat transport ...
  • M.H. Tavakoli and H. Wilke, Numerical investigation of heat transport ...
  • M.H. Tavakoli, S. Omid and E. Mohammadi-Manesh, Influence of active ...
  • A. Raufeisen, S. Jana, M. Breuer, T., Botsch and F. ...
  • P. Gunjal, M. Kulkarni, P. Ramachandran, Melt flow simulations of ...
  • M.H. Tavakoli, Numerical study of heat transport and fluid flow ...
  • O. Smirnova, N. Durnev, K. Shandrakova, E. Mizitov and V. ...
  • I.C. Avetissov, E.A. Sukhanova, A.P. Sadovskii, V.A. Kostikov and E.V. ...
  • F. Mokhtari, A. Bouabdallah, A. Merah, M. Zizi, S. Hanchi ...
  • X. Cen, J. Zhan and Y.S. Li, Large eddy simulation ...
  • W. Miller, C. Frank-Rotsch and P. Rudolph, Numerical studies of ...
  • O. Asadi Noghabi, M. M'Hamdi and M. Jomaa, Effect of ...
  • J. Chaohua, Effect of crystal and crucible rotations on the ...
  • M. Kirpo, Global simulation of the Czochralski silicon crystal growth ...
  • A.B. Crowley, Czochralski Crystal Pulling, IMA J. Appl. Math., ۳۰, ...
  • F. Dupret, P. Nicodème, Y. Ryckmans, P. Wouters and M. ...
  • N. Van den Bogaert and F. Dupret, J. Cryst. Growth, ...
  • N. Van den Bogaert and F. Dupret, J. Cryst. Growth, ...
  • S.V. Bykova, V.D. Golyshev, M.A. Gonik, V.B. Tsvetovsky, I.V. Frjazinov ...
  • S. Abbasoglu, Three-dimensional numerical simulation of crystal and crucible rotations ...
  • M. Honarmandnia, M.H. Tavakolia and H. Sadeghi, CrystEngComm, Global simulation ...
  • M. Honarmandnia, M.H. Tavakolia and H. Sadeghi, CrystEngComm, Global simulation ...
  • A. Raufeisen, M. Breuer, T. Botsch and A. Delgado, J. ...
  • D.T.J. Hurle, Crystal Pulling from the Melt, Springer-Verlag (۱۹۹۳) ...
  • D.T.J. Hurle, Handbook of Crystal Growth. Vol ۲, Elsevier (۱۹۹۴) ...
  • نمایش کامل مراجع