Publication Cover
Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 69, 2016 - Issue 2
384
Views
14
CrossRef citations to date
0
Altmetric
Original Articles

Assessment of advanced RANS models against large eddy simulation and experimental data in the investigation of ribbed passages with passive heat transfer

, , &
Pages 96-110 | Received 01 May 2015, Accepted 10 Aug 2015, Published online: 21 Jan 2016

References

  • R. L. Webb, E. R. G Eckert, and R. J. Goldstein, Heat Transfer and Friction in Tubes with Repeated-Rib Roughness, Int. J. Heat Mass Transfer, vol. 14, pp. 601–617, 1971.
  • J. C. Han, L. R. Glicksman, and W. M. Rohsenow, An Investigation of Heat Transfer and Friction for Rib-Roughened Surfaces, Int. J. Heat Mass Transfer, vol. 21, pp. 1143–1156, 1978.
  • J. S. Park, J. C. Han, Y. Huang, S. Ou, and R. J. Boyle, Heat Transfer Performance Comparisons of Five Different Rectangular Channels with Parallel Angled Ribs, Int. J. Heat Mass Transfer, vol. 35, pp. 2891–2903, 1992.
  • T. M. Liou, Y. Y. Wu, and Y. Chang, LDV Measurements of Periodic Fully Developed Main and Secondary Flows in a Channel with Rib-Disturbed Walls, J. Fluids Eng., vol. 115, pp. 109–114, 1993.
  • S. Okamoto, S. Seo, K. Nakaso, and I. Kawai, Turbulent Shear Flow and heat transfer over the Repeated Two-Dimensional Square Ribs on Ground Plane, Trans. ASME J. Fluids Eng., vol. 115, pp. 631–637, 1993.
  • G. Rau, M. Çakan, D. Moeller, and T. Arts, The Effect of Periodic Ribs on the Local Aerodynamic and Heat Transfer Performance of a Straight Cooling Channel, ASME J. Turbomach., vol. 120, pp. 368–375, 1998.
  • H. Iacovides, D. C. Jackson, H. Ji, G. Kelemenis, B. E. Launder, and K. Nikas, LDA Study of Flow Development through an Orthogonally Rotating U-bend of Strong Curvature and Rib-Roughened Walls, ASME J. of Turbomach., vol. 108, pp. 386–391, 1998.
  • H. Iacovides, D. C. Jackson, G. Kelemenis, and B. E. Launder, The Measurement of Local Wall Heat Transfer in Stationary U-ducts of Strong Curvature, with Smooth and Rib Roughened Walls, ASME J. Turbomach., vol. 122, pp. 386–392, 2000.
  • P. A. Krogstad, H. I. Andersson, O. M. Bakken, and A. Ashrafian, An Experimental and Numerical Study of Channel Flow with Rough Walls, J. Fluid Mech., vol. 530, pp. 327–352, 2005.
  • F. Coletti, T. Maurer, T. Arts, and A. Di Sante, Flow Field Investigation in Rotating Rib-Roughened Channel by Means of Particle Image Velocimetry, Experiments in Fluids, vol. 52, No. 4, pp. 1043–1061, 2012.
  • M. Ciafalo and M. W. Collins, Large Eddy Simulation of Turbulent Flow and Heat Transfer in Plane and Rib-Roughened Channels, Int. J. Numer. Meth. Fluids, vol. 15, pp. 453–489, 1992.
  • E. A. Sewall, D. K. Tafti, A. B. Graham, and K. A. Thole, Experimental Validation of Large Eddy Simulations of Flow and Heat Transfer in a Stationary Ribbed Duct, Int. J. Heat and Fluid Flow, vol. 27, pp. 243–258, 2006.
  • J. Ahn, H. Choi, and J. S. Lee, Large Eddy Simulation of Flow and Heat Transfer in a Rotating Ribbed Channel, Int. J. Heat Mass Transfer, vol. 50, pp. 4937–4947, 2007.
  • J. W. Baughn and X. Yan, Local Heat Transfer Measurements in Square Ducts with Transverse Ribs, Proceedings of ASME 28th National Heat Transfer Conference, vol. 202, San Diego, CA, USA, pp. 1–7, 1992.
  • J. W. Baughn and J. L. Roby, Enhanced Turbulent Heat Transfer in Circular Ducts with Transverse Ribs, Proceedings of ASME 28th National Heat Transfer Conference, vol. 202, San Diego, CA, USA, 1992.
  • H. Iacovides and M. Raisee, Recent Progress in the Computation of Flow and Heat Transfer in Internal Cooling Passages of Turbine Blade, Int. J. Heat Fluid Flow, vol. 20, pp. 320–328, 1999.
  • H. Iacovides and M. Raisee, Computation of Flow and Heat Transfer in Two-Dimensional Rib-Roughened Passages, Using Low-Reynolds-Number Turbulence Models, Int. J. Numer. Meth. Heat Fluid Flow, vol. 11, pp. 138–155, 2001.
  • R. Manceau, S. Parneix, and D. Laurence, Turbulent Heat Transfer Predictions Using the v^2-f Model on Unstructured Meshes, Int. J. Heat Fluid Flow, vol. 21, pp. 320–328, 2000.
  • A. Ooi, G. Iaccarino, P. A. Durbin, and M. Behnia, Reynolds Averaged Simulation of Flow and Heat Transfer in Ribbed Ducts, Int. J. Heat Fluid Flow, vol. 23, pp. 750–757, 2002.
  • J. Bredberg, S. H. Peng, and L. Davidson, An Improved k-w Turbulence Model Applied to Recirculating Flows, Int. J. Heat Fluid Flow, vol. 23, pp. 731–743, 2002.
  • M. Raisee, A. Noursadeghi, and H. Iacovides, Application of a Non-Linear k-ε Model in Prediction of Convective Heat Transfer Through Ribbed Passages, Int. J. Heat Fluid Flow, vol. 14, pp. 285–304, 2004.
  • D. N. Ryu, D. H. Choi, and V. C. Patel, Analysis of Turbulent Flow in Channels Roughened by Two-Dimensional Ribs and Three-Dimensional Blocks. Part I: Resistance, Int. J. Heat Fluid Flow, vol. 28, pp. 1098–1111, 2007.
  • A. Keshmiri and J. Gotts, Thermal-Hydraulic Analysis of Four Geometrical Design Parameters in Rib-Roughened Channels, J. Numer. Heat Transfer Part A, vol. 60, pp. 305–327, 2011.
  • A. Keshmiri, Numerical Sensitivity Analysis of 3- and 2-Dimensional Rib-Roughened Channels, J. Heat Mass Transfer, vol. 48, pp. 1257–1271, 2012.
  • B. E. Launder and B. I. Sharma, Application of the Energy Dissipation Model of Turbulence to the Calculation of Flow Near a Spinning Disc, Lett. Heat Mass Transfer, vol. 1, pp. 131–138, 1974.
  • C. R. Yap, Turbulent Heat and Momentum Transfer in Recirculating and Impinging Flows, Ph.D. thesis, UMIST (now the University of Manchester), UK, 1987.
  • H. C. Chen and V. C. Patel, Near-Wall Turbulence Models for Complex Flows Including Separation, AIAA J., vol. 26, pp. 641–648, 1988.
  • K. Abe, T. Kondoh, and Y. Nagano, A New Turbulence Model for Predicting Fluid Flow and Heat Transfer in Separating and Reattaching Flows—I. Flow Field Calculations, Int. J. Heat Mass Transfer, vol. 37, pp. 139–151, 1994.
  • D. C. Wilcox, Comparison of Two-Equation Turbulence Models for Boundary Layers with Pressure Gradient, AIAA J., vol. 31, pp. 1414–1421, 1993.
  • F. Lien and G. Kalitzin, Computations of Transonic Flow with the v2-f Turbulence Model, Int. J. Heat Fluid Flow, vol. 22, pp. 53–61, 2001.
  • D. C. Wilcox, Turbulence Modeling for CFD, 2 ed., DCW Industries, La Cañada, 1998.
  • F. R. Menter, Two-Equation Eddy-Viscosity Turbulence Models for Engineering Applications, AIAA J., vol. 32, pp. 1598–1605, 1994.
  • G. Iaccarino, Predictions of a Turbulent Separated Flow Using Commercial CFD Codes, J. Fluids Eng., vol. 123, pp. 819–828, 2001.
  • F. Archambeau, N. Mechitoua, and M. Sakiz, A Finite Volume Method for the Computation of Turbulent Incompressible Flows—Industrial Applications, Int. J. Finite Volume, Electron Ed. http://averoes.math.univ-paris13.fr/html, ISSN 1634(0655), vol. 1, 2004.
  • CD-Adapco, STAR-CD Methodology, Version 4.02. 2006.
  • C. Hirsch, Numerical Computation of Internal, and External Flows. Volume 2: Computational Methods for Inviscid, and Viscous Flows, John Wiley, & Sons, 1990.
  • A. Keshmiri, J. C. Uribe, and N. Shokri, Benchmarking of Three Different CFD Codes in Simulating Natural, Forced and Mixed Convection Flows, J. Numer. Heat Transfer, vol. 67, pp. 1324–1351, 2015.
  • A. Keshmiri, M. Cotton, Y. Addad, and D. Laurence, Turbulence Models and Large Eddy Simulations Applied to Ascending Mixed Convection Flows, Flow, Turbulence Combustion, vol. 89, pp. 407–434, 2012.
  • P. A. Durbin, Near-Wall Turbulence Closure Modeling without Damping Functions, Theoret. Comput. Fluid Dynam., vol. 3, pp. 1–13, 1991.
  • D. R. Laurence, J. C. Uribe, and S. V. Utyuzhnikov, A Robust Formulation of the v2-f Model, Flow, Turbulence Combustion, vol. 73, pp. 169–185, 2004.
  • R. Manceau and K. Hanjalić, Elliptic Blending Model: A New Near-Wall Reynolds-Stress Turbulence Closure, Phys. Fluids, vol. 14, pp. 744–754, 2002.
  • P. Durbin, A Reynolds-Stress Model for Near-Wall Turbulence, J. Fluid Mech., vol. 249, pp. 465–498, 1993.
  • C. G. Speziale, S. Sarkar, and T. B. Gatski, Modelling the Pressure-Strain Correlation of Turbulence: An Invariant Dynamical System Approach J. Fluid Mech., vol. 227, pp. 245–272, 1991.
  • F. Dehoux, Modélisation statistique des écoulements turbulents en convection forcée, mixte et naturelle. Ph.D. Thesis, Université de Poitiers, France, 2012.
  • M. Germano, U. Piomelli, P. Moin, and W. Cabot, A Dynamic Subgridscale Eddy Viscosity Model, Phys. Fluids, vol. 3, No. 7, pp. 1760–1766, 1991.
  • D. Lilly, A Proposed Modification of the Germano Subgrid-Scale Closure Method, Phys. Fluids, vol. 4, p. 633, 1992.
  • S. Benhamadouche, Large Eddy Simulation with the Unstructured Collocated Arrangement, Ph.D. thesis, UMIST (now University of Manchester), UK, 2006.
  • T. J. Craft, B. E. Launder, and K. Suga, Development and Application of a Cubic Eddy-Viscosity Model of Turbulence, Int. J. Heat Fluid Flow, vol. 17, pp. 108–115, 1996.
  • A. Keshmiri, A. Revell, and H. Darabkhani, Assessment of a Common Non-Linear Eddy-Viscosity Turbulence Model in Capturing Laminarization in Mixed Convection Flows, Numer. Heat Transfer, in- Press, 2015, DOI:10.1080/10407782.2015.1069672.
  • H. H. Cho, S. J. Wu, and H. J. Kwon, Local Heat/Mass Transfer Measurements in a Rectangular Duct with Discrete Ribs, ASME J. Turbomach., vol. 122, pp. 579–586, 2000.
  • T. M. Liou and J. J. Hwang, Effect of Ridge Shapes on Turbulent Heat Transfer and Friction in a Rectangular Channel, Int. J. Heat Mass Transfer, vol. 36, pp. 931–940, 1993.
  • L. D. Kral, Recent Experience with Different Turbulence Models Applied to the Calculation of Flow Over Aircraft Components, Prog. Aerospace Sci., vol. 34, No. 7–8, pp. 481–541, 1998.
  • L. Casarsa and T. Arts., Aerodynamic Performance Investigation of a Rib Roughened Cooling Channel Flow with High Blockage Ratio, 11th International Symposia on Applications of Laser Techniques to Fluid Mechanics Lisbon, Portugal, 2002.
  • G. Iaccarino, A. Ooi, P. A. Durbin, and M. Behnia, Conjugate Heat Transfer Predictions in Two-Dimensional Ribbed Passages, Int. J. Heat Fluid Flow, vol. 23, pp. 340–345, 2002.
  • A. Keshmiri, Three-Dimensional Simulation of a Simplified Advanced Gas-Cooled Reactor Fuel Elements, Nuclear Eng. Design, vol. 241, pp. 4122–4135, 2011.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.