DocumentCode :
1918412
Title :
Application of multi heaters in a directional solidification furnace for silicon solar cells
Author :
Nan, Xiaohong ; Wang, Yanru ; Li, Zaoyang ; Liu, Lijun
Author_Institution :
Sch. of Environ. & Municipal Eng., Xi´´an Univ. of Archit. & Technol., Xi´´an, China
Volume :
1
fYear :
2011
fDate :
20-22 May 2011
Firstpage :
229
Lastpage :
233
Abstract :
A heating system with multi heaters is applied to a directional solidification furnace for solar silicon. Transient global simulations were carried out to study the effects of power distribution on the global heat transfer, the melt convection and the melt-crystal (m-c) interface shape in a solidification process. The simulations included melt convection, argon flow, thermal conduction, thermal radiation and phase change in the furnace. The power distribution ratio between the upper side heater and the lower side heater was adjusted. It was found that the power distribution could significantly influence the global thermal field, the silicon melt flow pattern and the m-c interface shape through the process. If the power distribution between the two side heaters is not appropriate, there would be vacuole or high thermal stress in the Si ingots. The research demonstrates that application of multi heaters is an effective method to control and optimize the thermal field in a directional solidification furnace for multi-crystalline Si ingot of high quality.
Keywords :
directional solidification; electric furnaces; heat conduction; heat radiation; heat transfer; ingots; silicon; solar cells; Si; argon flow; directional solidification furnace; global heat transfer; global thermal field; melt convection; melt-crystal interface shape; multicrystalline ingot; multiheaters; phase change; power distribution; solar cells; thermal conduction; thermal radiation; thermal stress; transient global simulations; Crystals; Furnaces; Heat engines; Heating; Solid modeling; Temperature dependence; Thermal conductivity; computer simulation; directional solidification; heat transfer; multi heaters; solar Si;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Materials for Renewable Energy & Environment (ICMREE), 2011 International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-61284-749-8
Type :
conf
DOI :
10.1109/ICMREE.2011.5930802
Filename :
5930802
Link To Document :
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