DocumentCode
2753240
Title
Numerical simulation and visualization of engineering analysis of thermal and flow fields of consecutive diffusing furnace
Author
Hu, Guihua ; Zhu, Wenhua ; Yu, Tao ; Su, Yupeng
Author_Institution
CIMS&Robot Center, Shanghai Univ., Shanghai
fYear
2008
fDate
13-16 July 2008
Firstpage
1614
Lastpage
1619
Abstract
A CFD (computational fluid dynamics) software Fluent is applied to numerical simulation for gaspsilas thermal and flow fields in consecutive diffusing furnace. The results of simulation meet producing requirement. The data of temperature field and velocity field of numerical simulation is used to access to development package Open Inventor developed by VR (virtual reality) system. The visualization of engineering analysis on temperature field and velocity field of gas in consecutive diffusing furnace is realized by combining C++ on VC platform. The visualization of engineering analysis of gaspsilas thermal and flow fields can visually and distinctly show temperature and velocity distribution inside diffusing furnace. The process parameters are adjusted in time so as to provide theoretical basis for optimizing process of consecutive diffusing furnace.
Keywords
C++ language; computational fluid dynamics; data visualisation; flow simulation; furnaces; heat transfer; heat treatment; production engineering computing; thermal analysis; virtual reality; C++ language; Fluent software; Open Inventor; computational fluid dynamics; consecutive diffusing furnace; data visualization; engineering analysis; gas flow field; gas thermal field; heating machining equipment; numerical simulation; temperature distribution; velocity distribution; velocity field; virtual reality; Computational fluid dynamics; Computational modeling; Data visualization; Furnaces; Numerical simulation; Packaging; Temperature; Thermal engineering; Virtual colonoscopy; Virtual reality;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Informatics, 2008. INDIN 2008. 6th IEEE International Conference on
Conference_Location
Daejeon
ISSN
1935-4576
Print_ISBN
978-1-4244-2170-1
Electronic_ISBN
1935-4576
Type
conf
DOI
10.1109/INDIN.2008.4618362
Filename
4618362
Link To Document