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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 65, 2014 - Issue 6
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Original Articles

Investigation into Flow Field in Relation to Laser Gas Assisted Processing: Influence of Assisting Gas Velocity on the Flow Field

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Pages 556-583 | Received 20 Jun 2013, Accepted 01 Aug 2013, Published online: 09 Dec 2013

REFERENCES

  • M. Sharif and K. K. Mothe , Evaluation of Turbulence Models in the Prediction of Heat Transfer Due to Slot Jet Impingement on Plane and Concave Surfaces , Numer. Heat Transfer B , vol. 55 , pp. 273 – 94 , 2009 .
  • M. Jr-Ming , W. Chen-Yuan , and C. Ping-Hei , Numerical Investigation of Confined Multiple-Jet Impingement Cooling Over a Flat Plate at Different Cross-Flow Orientations , Numer. Heat Transfer A , vol. 55 , pp. 1019 – 50 , 2009 .
  • M. K. Tiwari , A. Mukhopadhyay , and D. Sanyal , Numerical Simulation of Optimal Multiple-Input, Multiple-Output Control of Jet Impingement Cooling of a Glass Plate , Numer. Heat Transfer A , vol. 46 , pp. 401 – 424 , 2004 .
  • A. Ryfa , D. Ingham , and R. A. Bialecki , Direct and Inverse Methods for an Air Jet Impingement , Numer. Heat Transfer A , vol. 61 , pp. 547 – 568 , 2012 .
  • M. M. Rahman , C. F. Hernandez , and J. C. Lallave , Free Liquid Jet Impingement from a Slot Nozzle to a Curved Plate , Numer. Heat Transfer A , vol. 57 , pp. 799 – 821 , 2010 .
  • N. Zuckerman and N. Lior , The Relationship Between the Distributions of Slot-Jet-Impingement Convective Heat Transfer and the Temperature in the Cooled Solid Cylinder , Numer. Heat Transfer A , vol. 53 , pp. 1271 – 93 , 2008 .
  • R. J. Jefferson-Loveday and P. G. Tucker , Wall-Resolved LES and Zonal LES of Round Jet Impingement Heat Transfer on a Flat Plate , Numer. Heat Transfer B , vol. 59 , pp. 190 – 208 , 2011 .
  • S. Z. Shuja , Jet Impingement Onto a Hole with Different Barreling: Flow and Heat Transfer Analysis , Numer. Heat Transfer A , vol. 63 , pp. 549 – 562 , 2013 .
  • S. Z. Shuja and B. S. Yilbas , Jet Emerging From a Nozzle and Impinging on a Conical Cavity: Influence of Nozzle and Cavity Geometric Configurations , Numer. Heat Transfer , vol. 61 , pp. 142 – 162 , 2012 .
  • S. Z. Shuja , B. S. Yilbas , and S. Khan , Jet Impingement Onto a Conical Cavity: Effects of Annular Nozzle Outer Angle and Jet Velocity on Heat Transfer and Skin Friction , Int. J. Thermal Sciences , vol. 48 , pp. 985 – 997 , 2009 .
  • F. W. Dabby and U. Paek , High-Intensity Laser-Induced Vaporization and Explosion of Solid Material , IEE J. of Quantum Electronics , vol. QE-8 , pp. 106 – 111 , 1972 .
  • M. Beck , P. Berger , and H. Hugel , The Effect of Plasma Formation on Beam Focusing in Deep Penetration Welding with CO2 Lasers , J. Phys. D: Appl. Phys. , vol. 28 , pp. 2430 – 2442 , 1995 .
  • D. Lacroix , G. Jeandel , and C. Boudot , Spectroscopic Characterization of Laser-Induced Plasma Created During the Welding with a Pulsed Nd:YAG Laser , J. Appl. Phys. , vol. 81 , pp. 6599 – 6606 , 1997 .
  • Y. Zhang and A. Faghri , Vaporization, Melting, and Heat Conduction in the Laser Drilling Process , Int. J. Heat and Mass Transfer , vol. 42 , pp. 1775 – 1790 , 1999 .
  • B. S. Yilbas , A. Z. Sahin , and R. Davies , Laser Heating Mechanism Including Evaporation Process Initiating Laser Drilling , Int. J. Mach. Tools Manufact. , vol. 35 , pp. 1047 – 1062 , 1995 .
  • B. S. Yilbas and A. Z. Al-Garni , Some Aspects of Laser Heating of Engineering Materials , J. Laser Applications , vol. 8 , pp. 197 – 204 , 1996 .
  • H. Kouros , R. Medina , and H. Johari , Spreading Rate of an Unsteady Turbulent Jet, AIAA J. , vol. 31, pp. 1524–1526, 1993.
  • J. Abraham , Entrainment Characteristics of Transient Gas Jets , Numer. Heat Transfer A , vol. 30 , pp. 347 – 364 , 1996 .
  • J. Park and H. D. Shin , Experimental Investigation of the Developing Process of an Unsteady Diffusion Flame , Combustion and Flame , vol. 110 , pp. 67 – 77 , 1997 .
  • S. M. Hosseinalipour and A. S. Mujumdar , Flow and Thermal Characteristics of Steady Two-Dimensional Confined Laminar Opposing Jets: Part I. Equal Jets , Int. Comm. Heat Mass Transfer , vol. 24 , pp. 27 – 38 , 1997 .
  • D. A. Johnson , Experimental and Numerical Examination of Confined Laminar Opposed Jets Part I. Momentum Imbalance , Int. Comm. Heat Mass Transfer , vol. 27 , no. 4 , pp. 443 – 454 , 2000 .
  • W. J. Sheu and N. C. Liou , Efficiency of Heat Transfer Between Opposed Corotating Jets , Numer. Heat Transfer A , vol. 36 , pp. 35 – 49 , 1999 .
  • N. Benet , L. Falk , H. Muhr , and E. Plasari , Characterization and Modelling of a Two Impinging Jet Mixer for Precipitation Process using Laser Induced Fluorescence, 10th European Conference on Mixing, Delft, The Netherlands, pp. 35–44, 2000 .
  • M. A. Jarrah , T. K. Aldoss , and A. M. Al-Sarkhi , Interaction of Two Opposite Conical Curved Wall Jets , Int. J. Heat and Fluid Flow , Vol. 17 , pp. 397 – 402 , 1996 .
  • B. S. Yilbas , G. M. Arshed , and H. I. Acar , Investigation into Laser Produced Evaporating Front Characteristics in Relation to Laser Drilling , Lasers in Eng. , vol. 13 , pp. 65 – 74 , 2003 .
  • X. Zhou , G. Brenner , T. Weber , and F. Durst , Finite-Rate Chemistry in Modelling of Two-Dimensional Jet Premixed CH4/Air Flame , Int. J. Heat and Mass Transfer , vol. 42 , pp. 1757 – 1773 , 1999 .
  • D. C. Wilcox , Turbulence Modeling for CFD , chap. 5 , pp. 223 – 252 , DCW Industries Inc. , La Canada , USA , 2000 .
  • W. Rodi , Turbulence Models and Their Application in Hydraulics—A State of the Art Review, Presented by the IAHR-Section on Fundamentals of Division II: Experimental and Mathematical Fluid Dynamics, New York, USA, 1984.
  • C. K. G. Lam and K. A. Bremhorst , Modified Form of the k–ε Model for Predicting Wall Turbulence , Trans. ASME J. Fluid Eng. , vol. 103 , pp. 456 – 460 , 1981 .
  • R. S. Amano and H. Brandt , Numerical Study of Turbulent Axisymmetric Jets Impinging on a Flat Plate and Flowing into an Axisymmetric Cavity , ASME J. Fluid Engineering , vol. 106 , pp. 410 – 417 , 1984 .
  • 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 .
  • H. K. Versteeg and W. Malalasekera , An Introduction to Computational Fluid Dynamics, the Finite Volume Method , Longman Scientific and Technical , New York , NY , 1995 .
  • S. V. Patankar , Numerical Heat Transfer and Fluid Flow, Series in Computational Methods in Mechanics and Thermal Sciences , McGraw-Hill Book Company , New York , NY , 1980 .
  • H. Kouros , R. Medina , and H. Johari , Spreading Rate of an Unsteady Turbulent Jet , AIAA J. , vol. 31 , pp. 1524 – 1526 , 1993 .
  • D. Cooper , D. C. Jackson , B. E. Launder , and G. X. Liao , Impinging Jet Studies for Turbulence Model Assessment—I: Flow-Field Experiments , Int. J. Heat and Mass Transfer , vol. 36 , pp. 2675 – 2684 , 1993 .

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