Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 52, 2007 - Issue 12
162
Views
5
CrossRef citations to date
0
Altmetric
Original Articles

Hybrid Turbulence Modeling of Liquid Spray Impingement on a Heated Wall with Arbitrary Lagrangian Eulerian Method

&
Pages 1059-1079 | Received 30 Jan 2007, Accepted 01 Mar 2007, Published online: 19 Sep 2007

REFERENCES

  • D. P. Rini , R. H. Chen , and L. C. Chow , Bubble Behavior and Nucleate Boiling Heat Transfer in Saturated FC-72 Spray Cooling , J. Heat Transfer , vol. 124 , pp. 63 – 72 , 2002 .
  • I. Mudawar and K. A. Estes , Optimizing and Predicting CHF in Spray Cooling of a Square Surface , ASME J. Heat Transfer , vol. 118 , pp. 672 – 679 , 1996 .
  • H. M. Loureiro , M. R. O. Panao , and A. L. N. Moreira , Simultaneous Measurements of Droplet Characteristics and Surface Thermal Behavior to Study Spray Cooling with Pulsed Sprays , 12th International Symposium on Applications of Laser Techniques to Fluid Mechanics , Lisboa , 2004 .
  • M. Kato , Y. Abe , T. Oka , Y. H. Mori , and A. Nagashima , Spray Cooling Under Reduced Gravity Conditions , ASME J. Heat Transfer , vol. 123 , pp. 309 – 318 , 2001 .
  • P. J. Halvorson , R. J. Carson , S. M. Jeter , and S. I. Abdel-Khalik , Critical Heat Flux Limits for a Heated Surface Impacted by a Stream of Liquid Droplets , J. Heat Transfer , vol. 116 , pp. 679 – 685 , 1994 .
  • B. W. Webb , M. Queiroz , K. N. Oliphant , and M. P. Bonin , Onset of Dry-Wall Heat Transfer in Low-Mass-Flux spray Cooling , J. Exp. Heat Transfer , vol. 5 , pp. 33 – 92 , 1992 .
  • S. C. Yao and K. J. Chio , Heat transfer Experiments of Mono-dispersed Vertically Impacting Sprays , Int. J. Multiphase Flow , vol. 13 , pp. 639 – 648 , 1987 .
  • F. K. McGinnis and J. P. Holman , Individual Droplet Heat-Transfer Rates for Splattering on Hot Surfaces , Int. J. Heat Mass Transfer , vol. 12 , pp. 95 – 108 , 1969 .
  • M. R. Pais , L. C. Chow , and E. T. Mahefkey , Surface Roughness and Its Effects on the Heat Transfer Mechanism in Spray Cooling, J. Heat Transfer , vol. 114, pp. 211–219, 1992.
  • J. D. Bernardin , C. J. Stebbins , and I. Mudawar , Effects of Surfaces Roughness on Water Droplet Impact History and Heat Transfer Regime , Int. J. Heat Mass Transfer , vol. 40 , pp. 73 – 88 , 1997 .
  • Y. M. Qiao and S. Chandra , Boiling of Droplets on a Hot surface in Low Gravity , Int. J. Heat Mass Transfer , vol. 39 , pp. 1379 – 1393 , 1996 .
  • L. Ortiz and J. E. Gonzalez , Experiments on Steady-State High Heat Fluxes Using Spray Cooling , Exp. Heat Transfer , vol. 12 , pp. 215 – 233 , 1999 .
  • G. Chochua , W. Shyy , S. Thakur , A. Brankovic , J. Lienau , L. Porter , and D. Lischinsky , A Computational and Experimental Investigation of Turbulent Jet and Crossflow Interaction , Numer. Heat Transfer A , vol. 38 , no. 6 , pp. 557 – 572 , 2000 .
  • H. Chattopadhyay and S. K. Saha , Numerical Investigations of Heat Transfer over a Moving Surface due to Impinging Knife Jets , Numer. Heat Transfer A , vol. 39 , no. 5 , pp. 531 – 549 , 2001 .
  • H. B. Aissia , Y. Zaouali , and S. El Golli , Numerical Study of the Influence of Dynamics and Thermal Exit Conditions on Axisymmetric Laminar Buoyant Jet , Numer. Heat Transfer A , vol. 42 , pp. 427 – 444 , 2002 .
  • S. M. Hatem , M. S. El Golli , G. Le Palec , and P. Bournot , Numerical Study of a Heated Pulsed Axisymmetric Jet in Laminar Mode , Numer. Heat Transfer A , vol. 43 , pp. 409 – 429 , 2003 .
  • A. J. Bula , M. M. Rahman , and J. E. Leland , Numerical Modeling of Conjugate Heat Transfer During Impingement of Free Liquid Issuing from a Slot Nozzle , Numer. Heat Transfer A , vol. 38 , pp. 45 – 66 , 2000 .
  • Y. Tong , A Numerical Study on the Hydrodynamics and Heat Transfer of a Circular Liquid Jet Impinging onto a Substrate , Numer. Heat Transfer A , vol. 44 , pp. 1 – 19 , 2003 .
  • F. Mashayek and D. B. Taulbee , Turbulent Gas–Solid Flows, Part I: Direct Simulations and Reynolds Stress Closures , Numer. Heat Transfer B , vol. 41 , pp. 1 – 29 , 2002 .
  • F. Mashayek and D. B. Taulbee , Turbulent Gas–Solid Flow, Part II: Explicit Algebraic Models , Numer. Heat Transfer B , vol. 41 , pp. 31 – 52 , 2002 .
  • A. V. Nguyen , C. A. J. Fletcher , and J. Y. Tu , CFD Study of the Heat Transfer between a Dilute Gas Particle Suspension Flow and an Obstruction , Numer. Heat Transfer A , vol. 35 , pp. 537 – 551 , 1999 .
  • Y. L. Shi , A. S. Mujumdar , and M. B. Ray , Heat Transfer in Multiple-Turbulent-Slot Impinging Jets of Gas-Particle Suspensions , Numer. Heat Transfer A , vol. 47 , pp. 147 – 164 , 2005 .
  • R. Gardon and J. C. Akfirat , The Role of Turbulence in Determining the Heat Transfer Characteristics of Impinging Jets , Int. J. Heat Mass Transfer , vol. 8 , pp. 1261 – 1272 , 1965 .
  • C. J. Hoogendoorn , The Effects of Turbulence on Heat Transfer at a Stagnation Point , Int. J. Heat Mass Transfer , vol. 18 , pp. 597 – 605 , 1975 .
  • N. T. Obot , A. S. Majumdar , and W. J. M. Douglas , The Effect of Nozzle Geometry on Impingement Heat Transfer under a Round Turbulent jet , ASME paper 79–WA/DT-53 , 1979 .
  • C. O. Popiel and L. Boguslawski , Effect of Flow Structure on the Heat or Mass Transfer on a Flat Plate in Impinging Round Jet , Proc. 2nd UK Natl. Conf. on Heat Transfer , University of Strathclyde , UK , vol. 1 , pp. 663 – 685 , 1988 .
  • D. Lytle and B. W. Webb , Air Jet Impingement Heat Transfer at Low Nozzle-Plate Spacing , Int. J. Heat mass Transfer , vol. 37 , pp. 1687 – 1697 , 1994 .
  • J. Sakakibara , K. Hishida , and M. Maeda , Measurements of Thermally Stratified Pipe Flow Using Image-Processing Techniques , Exp. In Fluids , vol. 16 , pp. 82 – 96 , 1993 .
  • J. Sakakibara , K. Hishida , and M. Maeda , Quantitative visualization of Convective Heat Transfer near the Stagnation Region of an Impinging Jet, ASME FED , vol. 172, pp. 93–99, 1993.
  • A. Chattterjee , S. C. Dhingra , and S. S. Kapur , Laminar Impinging Jet Heat Transfer with a purely Viscous Inelastic Fluid , Numer. Heat Transfer A , vol. 42 , pp. 757 – 775 , 2002 .
  • L. B. Y. Aldabbagh and I Sezai , Numerical Simulation of Three–Dimensional Laminar, Square Twin Jet Impingement on a Flat Plate, Flow Structure and Heat Transfer , Numer. Heat Transfer A , vol. 41 , pp. 835 – 850 , 2002 .
  • A. Chatterjee and L. J. Deviprasath , Heat Transfer in a Confined Laminar Axisymmetric Impinging Jets at small Nozzle–Plate Distances: The Role of Upstream Vorticity Diffusion , Numer. Heat Transfer A , vol. 39 , pp. 777 – 800 , 2001 .
  • D. L. Besserman , S. Ramadhyani , and F. P. Incropera , Numerical Simulations of Laminar Flow and Heat Transfer for Liquid Jet Impingement Cooling of a Circular Heat Source with Annular Collection of Spent Fluid , Numer. Heat Transfer A , vol. 20 , pp. 263 – 278 , 1991 .
  • S. H. Seyedein , M. Hasan , and A. S. Mujumdar , Turbulent Flow and Heat Transfer from Confined Multiple Impinging Slot Jets , Numer. Heat Transfer A , vol. 27 , pp. 35 – 51 , 1995 .
  • S. M. Hosseinalipour and A. S. Mujumdar , Comparitive Evaluation of Different Turbulence Models for Confined Impinging and Opposing Jet Flows , Numer. Heat. Transfer A , vol. 28 , pp. 647 – 666 , 1995 .
  • P. Y. Tzeng , C. Y. Soong , and C. D. Hsieh , Numerical Investigation of Heat Transfer under Confined Impinging Turbulent Slot Jets , Numer. Heat Transfer A , vol. 35 , pp. 903 – 924 , 1999 .
  • L. A. El-Gabry and D. A. Kaminski , Numerical investigation of jet impingement with cross flow – Comparison of yang-shih and standard k-ε turbulence models , Numer. Heat Transfer A , vol. 47 , pp. 441 – 469 , 2005 .
  • S. Z. Shuja , B. S. Yilbas , and M. O. Budair , Gas Jet Impingement on a Surface Having a Limited Constant Heat Flux Area: Various Turbulence Models , Numer. Heat Transfer A , vol. 36 , pp. 171 – 200 , 1999 .
  • T. Cziesla , E. Tandagon , and N. K. Mitra , Large-Eddy Simulation of Heat Transfer from Impinging Slot Jets , Numer. Heat Transfer A , vol. 32 , pp. 1 – 17 , 1997 .
  • A. A. Amsden , J. D. Ramshaw , L. D. Cloutman , and P. J. O'Rourke , KIVA: A Comprehensive Model for 2-D and 3-D engine Simulations , SAE Technical Paper 850554 , 1985 .
  • K. G. Tev , E. C. Timothy , and C. Norman , A Numerical and Experimental Study of Spray Dynamics in a Simple Throat Model , Aerosol Sci. Technology , vol. 36 , pp. 18 – 38 , 2002 .
  • J. S. Lee and R. H. Pletcher , LES of Variable Property Turbulent Flow in Horizontal and Vertical Channels with Buoyancy and Heat Transfer Effects , J. Mech. Engr. , in press .
  • J. S. Lee , X. Xu , and R. H. Pletcher , Large Eddy Simulation of Heated Vertical Annular Pipe Flow in Fully Developed Turbulent Mixed Convection , Int. J. Heat Mass Transfer , vol. 47 , pp. 437 – 446 , 2004 .
  • J. S. Lee , X. Xu , and R. H. Pletcher , Numerical Study of the Effects of Rotation on Heat Transfer in Channels with and without Ribs , Int. J. Heat Mass Transfer , vol. 47 , pp. 4673 – 4684 , 2004 .
  • J. S. Lee , X. Xu , and R. H. Pletcher , Large Eddy Simulation of the Effects of Inner Wall Rotation on Heat Transfer in Annular Turbulent Flow , Num. Heat Transfer A , vol. 46 , pp. 323 – 341 , 2004 .
  • J. S. Lee , X. Xu , and R. H. Pletcher , Effects of Wall Rotation on Heat Transfer to Annular Turbulent Flow: Outer Wall Rotating , J. Heat Transfer , vol. 127 , pp. 830 – 838 , 2005 .
  • X. Xu , J. S. Lee , R. H. Pletcher , M. Shehata , and D. M. McEligot , Large Eddy Simulation of Turbulent Forced Gas Flows in Vertical Pipes with High Heat Transfer Rates , Int. J. Heat Mass Transfer , vol. 47 , pp. 4113 – 4123 , 2004 .
  • X. Xu , J. S. Lee , and R. H. Pletcher , A Compressible Finite Volume Formulation for Large Eddy Simulation of Turbulent Pipe Flows at Low Mach Number in Cartesian Coordinates, J. Comp. Phys. , vol. 203, pp. 22–48, 2005.
  • W. W. Kim , S. Menon , and H. C. Mongia , Numerical Simulations of Reacting Flows in a Gas Turbine Combustor , Combust. Sci. Technol. , vol. 143 , pp. 25 – 62 , 1999 .
  • S. Menon , Subgrid Combustion Modeling for Large-Eddy Simulations , Int. J. Engine Res. , vol. 1 , pp. 209 – 227 , 2000 .
  • K. Sone and S. Menon , Effect of Subgrid Modeling on the In-Cylinder Unsteady Mixing Process in a Direct Injection Engine , J. Eng. Gas Turbines and Power , vol. 125 , pp. 435 – 443 , 2003 .
  • P. J. O'Rourke and A. A. Amsden , A Spray/Wall Interaction Submodel for the KIVA-3 Wall Film Model , SAE Trans. , vol. 109:33 , pp. 281 – 298 , 2000 .
  • B. Elison and W. Webb , Local Heat Transfer to Impinging Liquid Jets in the initially Laminar, Transitional, and Turbulent Regimes , Int. J. Heat Mass Transfer , vol. 37 , pp. 1207 – 1216 , 1994 .
  • C. Bai and A. D. Gosman , Development of Methodology for Spray Impingement Simulation , SAE Paper 950283 , 1995 .
  • J. Sakakibara , K. Hishida , and M. Maeda , Vortex Structure and Heat Transfer in the Stagnation Region of an Impinging Plane Jet (simultaneous measurements of velocity and temperature fields by digital particle image velocimetry and laser-induced fluorescence) Int. J. Heat and Mass Transfer , vol. 40 , pp. 3163 – 3176 , 1997 .
  • R. L. Panton , Incompressible Flow, , 2nd ed. , pp. 789 – 791 , Wiley , New York , 1996 .

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.