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Reflection of a shock wave from a thermally accommodating wall: Molecular simulation

 

作者: George S. Deiwert,  

 

期刊: Physics of Fluids(00319171)  (AIP Available online 1973)
卷期: Volume 16, issue 8  

页码: 1215-1219

 

ISSN:0031-9171

 

年代: 1973

 

DOI:10.1063/1.1694501

 

出版商: AIP

 

数据来源: AIP

 

摘要:

Reflection of a plane shock wave from a wall has been simulated on a microscopic scale using a direct simulation Monte Carlo technique of the type developed by Bird. A monatomic gas model representing argon was used to describe the fluid medium and a simple one‐parameter accommodation coefficient model was used to describe the gas‐surface interaction. The influence of surface accommodation was studied parametrically by varying the accomodation coefficient from zero to one. Results are presented showing the temporal variations of flow field density, and mass, momentum, and energy fluxes to the wall during the shock wave reflection process. The energy flux was used to determine the wall temperature history. Comparisons with experiment are found to be satisfactory where data are available.

 

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