MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES

Volume: 8 Number: 1.1 September 1, 2018
  • F. Mechighel
  • N. Armour
  • S. Dost
EN

MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES

Abstract

A mathematical model for the description of combined natural/ thermocap- illary convection melt ows in cylindrical 3D geometry is developed. It is utilized to model germanium melt convective ows in an isothermal experimental crucible setup. This experimental setup is devised exclusively to study the dissolution phenomenon of silicon into germanium melt. In this system, the germanium melt is subjected to higher temperatures. Using a simpli ed axisymmetric 2D model, numerical simulations are carried out to examine the combined natural/thermocapillary ows developing in the ger-manium melt. Pure thermocapillary and pure natural convective ows are also studied numerically.

Keywords

References

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Details

Primary Language

English

Subjects

-

Journal Section

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Authors

F. Mechighel This is me

N. Armour This is me

S. Dost This is me

Publication Date

September 1, 2018

Submission Date

-

Acceptance Date

-

Published in Issue

Year 2018 Volume: 8 Number: 1.1

APA
Mechighel, F., Armour, N., & Dost, S. (2018). MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES. TWMS Journal of Applied and Engineering Mathematics, 8(1.1), 193-207. https://izlik.org/JA27ZG35EC
AMA
1.Mechighel F, Armour N, Dost S. MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES. JAEM. 2018;8(1.1):193-207. https://izlik.org/JA27ZG35EC
Chicago
Mechighel, F., N. Armour, and S. Dost. 2018. “MODELING OF COMBINED NATURAL THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES”. TWMS Journal of Applied and Engineering Mathematics 8 (1.1): 193-207. https://izlik.org/JA27ZG35EC.
EndNote
Mechighel F, Armour N, Dost S (September 1, 2018) MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES. TWMS Journal of Applied and Engineering Mathematics 8 1.1 193–207.
IEEE
[1]F. Mechighel, N. Armour, and S. Dost, “MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES”, JAEM, vol. 8, no. 1.1, pp. 193–207, Sept. 2018, [Online]. Available: https://izlik.org/JA27ZG35EC
ISNAD
Mechighel, F. - Armour, N. - Dost, S. “MODELING OF COMBINED NATURAL THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES”. TWMS Journal of Applied and Engineering Mathematics 8/1.1 (September 1, 2018): 193-207. https://izlik.org/JA27ZG35EC.
JAMA
1.Mechighel F, Armour N, Dost S. MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES. JAEM. 2018;8:193–207.
MLA
Mechighel, F., et al. “MODELING OF COMBINED NATURAL THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES”. TWMS Journal of Applied and Engineering Mathematics, vol. 8, no. 1.1, Sept. 2018, pp. 193-07, https://izlik.org/JA27ZG35EC.
Vancouver
1.F. Mechighel, N. Armour, S. Dost. MODELING OF COMBINED NATURAL/THERMOCAPILLARY CONVECTION FLOWS IN GERMANIUM MELT AT HIGH TEMPERATURES. JAEM [Internet]. 2018 Sep. 1;8(1.1):193-207. Available from: https://izlik.org/JA27ZG35EC