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Analysis of Empirical Constant of Eddy Viscosity by k-ε and RNG k-ε Turbulence Model in Wake Simulation KCI 등재

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해양환경안전학회지 (Journal of the Korean Society of Marine Environment and Safety)
해양환경안전학회 (The Korean Society Of Marine Environment & Safety)
초록

The wakes behind a square cylinder were simulated using two-equation turbulence models, k-ε and RNG k-ε models. For comparisons between the model predictions and analytical solutions, we employed three skill assessments:, the correlation coefficient for the similarity of the wake shape, the error of maximum velocity difference (EMVD) of the accuracy of wake velocity, and the ratio of drag coefficient (RDC) for the flow patterns as in the authors’ previous study. On the basis of the calculated results, we discussed the feasibility of each model for wake simulation and suggested a suitable value for an eddy viscosity related constant in each turbulence model. The k-ε model underestimated the drag coefficient by over 40 %, and its performance was worse than that in the previous study with one-equation and mixing length models, resulting from the empirical constants in the ε-equation. In the RNG k-ε model experiments, when an eddy viscosity related constant was six times higher than the suggested value, the model results were yielded good predictions compared with the analytical solutions. Then, the values of EMVD and RDC were 3.8 % and 3.2 %, respectively. The results of the turbulence model simulations indicated that the RNG k-ε model results successfully represented wakes behind the square cylinder, and the mean error for all skill assessments was less than 4 %.

목차
Abstract
 1. Introduction
 2. Analytical Solutions and Turbulence Theories
  2.1 Analytical Solutions
  2.2 Turbulence Theories
 3. Numerical Models and Simulation Conditions
  3.1 Numerical Models
  3.2 Drag Coefficients
  3.3 Simulation Conditions
 4. Model Results and Discussion
  4.1 General Horizontal and Vertical Distribution of Wakes
  4.2 The k-ε Model’s Results
  4.3 The RNG k-ε Model’s Results
 5. Conclusions
 References
저자
  • Il Heum Park(School of Marine Technology, Chonnam National University) Corresponding Author
  • Young Jun Cho(Ocean and Port Research)
  • Jong Sup Lee(Department of Civil Engineering, Pukyong National University)