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A low Reynolds number dissipation rate equation model using the dissipation rate tensor equation and elliptic-blending equation
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  • A low Reynolds number dissipation rate equation model using the dissipation rate tensor equation and elliptic-blending equation
  • A low Reynolds number dissipation rate equation model using the dissipation rate tensor equation and elliptic-blending equation
저자명
Shin. Jong-Keun,Byun. Jae-Ki,Cho. Young-Don
간행물명
Journal of mechanical science and technology
권/호정보
2011년|25권 5호|pp.1361-1371 (11 pages)
발행정보
대한기계학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The purpose of this study is to theoretically supplement the dissipation rate equation model that has been adopted and used for the elliptic-blending second-moment closure widely and currently used for analysis of turbulent flow, and eventually to enhance the theoretical validity of the model. The new dissipation rate equation model was derived by using the dissipation rate equation in terms of length scale that can be applied both in the near-wall region and to homogeneous flow and by using the dissipation rate tensor equation model. The newly derived dissipation rate equation model is applied in the existing elliptic-blending model as it is. To test the model equation we conducted a numerical analysis of non-rotating and rotating channel flows, channel flow with uniform transpiration, square duct flow, and 3-dimensional curved duct flow before comparing the analysis results with DNS data and the measurements. In regard to all flow fields adopted in this study, the expected results showed a high satisfaction in comparison with DNS data and measurements, thereby proving the theoretical validity of the new model.