IMPROVEMENT OF LOW-REYNOLDS-NUMBER k-ε MODEL : Study on numerical simulaiton of room airflow in thermally stratifies condition (Part 1)
Author:
Affiliation:
1. Institute of Industrial Science, University of Tokyo
2. Nikken Sekkei Ltd.
Publisher
Architectural Institute of Japan
Subject
General Medicine,General Chemistry
Link
https://www.jstage.jst.go.jp/article/aija/60/476/60_KJ00004221340/_pdf
Reference15 articles.
1. 3) van DRIEST E. R. On Turbulent Flow near a Wall. J. of Aeronautical Science. vol.23,
2. 6) LAUNDER B. E. Application of the energydissipation model of turbulence to the calculation of flow near a spinning disc. Letters in Heat and Mass Transfer. (1974) vol.Vol. 1, p.131-138.
3. 7) SAVILL A. M. Further Progress in the Turbulence Modelling of By - pass Transition. Engineering Turbulence Modelling and Experiments 2. (1993) p.583-592.
4. 8) SIEGER K. An Evaluation of Low - Reynolds Number k-ε Turbulence Models for Predicting Transition under the Influence of Free-Stream Turbulence and Pressure Gradient. Engineering Turbulence Modelling and Experiments 2. (1993) p.593-602.
5. 9) HOSSAIN M. S. Influence of Buoyancy on the Turbulence Intensities in Horizontal and Vertical Jets,Heat Transfer and Turbulent Buoyant Convecti. McGrawHill edits. (1977)
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1. A PRIORI TEST FOR ASM, WET MODEL, EDDY VISCOSITY/DIFFUSIVITY MODEL : Assessment of turbulence model using LES database for a non-isothermal room airflow;Journal of Architecture and Planning (Transactions of AIJ);2002
2. CFD ANALYSIS OF THERMAL PLUME AND INDOOR AIR FLOW BY k-ε MODELS INCLUDING BUOYANT EFFECT;Journal of Architecture and Planning (Transactions of AIJ);1999
3. NEW k-ε MODEL INCLUDING DAMPING EFFECT DUE TO BUOYANCY : Study on numerical simulation of room airflow in thermally stratified condition (Part 2);Journal of Architecture and Planning (Transactions of AIJ);1996
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