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NUMERICAL STUDY OF TURBULENT IMPINGING JET WITH A REFINED k-ε MODEL

NUMERICAL STUDY OF TURBULENT IMPINGING JET WITH A REFINED k-ε MODEL
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摘要 A refined k-Ε model re-considering the fluctuating pressure diffusion term in the dissipation rate equation (Ε-equation) is provided and used in the numerical study of circular semi-confined turbulent impinging jet. The results are compared with those of the standard k-Ε model and show that the predicting ability of the refined k-Ε model is much improved, especially for the turbulent kinetic energy k. So it is necessary to consider the effect of the fluctuating pressure diffusion term and to model this term correctly and exactly in the near wall region with the great adverse pressure gradient, where the effect of the pressure fluctuating is important. Therefore we can conclude that the new modeling idea expressed in this paper is correct and effective. A refined k-Ε model re-considering the fluctuating pressure diffusion term in the dissipation rate equation (Ε-equation) is provided and used in the numerical study of circular semi-confined turbulent impinging jet. The results are compared with those of the standard k-Ε model and show that the predicting ability of the refined k-Ε model is much improved, especially for the turbulent kinetic energy k. So it is necessary to consider the effect of the fluctuating pressure diffusion term and to model this term correctly and exactly in the near wall region with the great adverse pressure gradient, where the effect of the pressure fluctuating is important. Therefore we can conclude that the new modeling idea expressed in this paper is correct and effective.
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出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2000年第4期8-15,共8页 水动力学研究与进展B辑(英文版)
基金 This paper is sponsored by the Chinese Post-doctor Scientific Fund( No.( 2 0 0 0 ) 2 3)
关键词 Computer simulation Jets Mathematical models TURBULENCE Computer simulation Jets Mathematical models Turbulence
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参考文献1

  • 1T. J. Craft,et al.1993: Impinging Jet Studies for Turbulence Model Assessment -Ⅱ, An Examination of the Performance of Four Turbulence Models, Int[].Waerme und Stoffuebertragung.

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