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                                       Details for article 20 of 34 found articles
 
 
  Heat Transfer in Noble Gases Using Direct Simulation Monte Carlo Technique (DSMC)
 
 
Title: Heat Transfer in Noble Gases Using Direct Simulation Monte Carlo Technique (DSMC)
Author: Mohamed M. Elafify
Khalil M. Elawadly
Sherif G. Elsharkawy
M. Bassiouny
Appeared in: Journal of applied sciences
Paging: Volume 2 (2002) nr. 12 pages 1050-1056
Year: 2002
Contents: Heat flow, temperature and density distributions in rarefied gas between two plates at rest with different Knudsen number values are analyzed using Direct Simulation Monte Carlo technique. The molecules are considered as hard sphere ones while the gas boundaries are diffusive surfaces. The results of the technique are compared to different methods. A sample problem of Hellium gas between two plates at rest is used as basis for such comparison. The temperature ratio had been taken as 1.3265. The heat flow comparison shows a good agreement with 4-moment and Ohwada methods for Knudsen numbers higher than 0.2. The Direct Simulation Monte Carlo results fluctuate around the continuum solution for Knudsen numbers lower than 0.2. These statistical fluctuations were less than 15%. The temperature and density profiles show the wall jumps for Knudsen numbers higher than 0.2. These non-continuum effects are noticeable for Knudsen number equal to 1.0. For Knudsen numbers lower than 0.2, these non-continuum effects disappear.
Publisher: Asian Network for Scientific Information, Pakistan (provided by DOAJ)
Source file: Elektronische Wetenschappelijke Tijdschriften
 
 

                             Details for article 20 of 34 found articles
 
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