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Influence of molecular vibration and rotation on wall heat flux in oscillating rarefied flow
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  • 作者:Woojin Jeon (1)
    Jae Hyun Park (2)
    Seung Wook Baek (1)
    Ji Hyung Lee (3)
    Dong Sung Ha (4)

    1. Department of Aerospace Engineering
    ; KAIST ; Daejeon ; 305-701 ; Korea
    2. Department of Aerospace and System Engineering and Research Center for Aircraft Parts Technology
    ; Gyeongsang National University ; Jinju ; Gyeongnam ; 660-701 ; Korea
    3. Seyeon E&S
    ; Daejeon ; 305-510 ; Korea
    4. Future Propulsion Center
    ; Agency for Defense Development ; Daejeon ; 305-600 ; Korea
  • 关键词:Rarefied gas dynamics ; Fluctuating flow ; Molecular vibration and rotation ; Direct simulation Monte Carlo (DSMC)
  • 刊名:Journal of Mechanical Science and Technology
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:29
  • 期:3
  • 页码:909-916
  • 全文大小:584 KB
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  • 刊物类别:Engineering
  • 刊物主题:Mechanical Engineering
    Structural Mechanics
    Control Engineering
    Industrial and Production Engineering
  • 出版者:The Korean Society of Mechanical Engineers
  • ISSN:1976-3824
文摘
In high temperature environments, molecular vibration and rotation become considerable in flow analysis. We employed unsteady direct simulation Monte Carlo to thoroughly investigate the effects of molecular vibration and rotation on the dynamic response of wall heat flux due to the oscillating flow input in a rarefied environment with high temperature. Three modes of temperature and heat flux (translational, vibrational and rotational) are distinctively quantified to identify the details of the response, in addition to the density and velocity fluctuations. With an increase in the medium temperature, the contribution of internal energy to the heat flux is found to significantly increase; however, the responses vary with the characteristic time of each mode. Besides their usefulness in contributing to the rapid development of space applications, the findings are expected to be significant in designing a thermal protection system for space vehicles in the future.

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