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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 29, 2016 - Issue 1
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Articles

Heat Transfer from a Hot Moving Steel Plate by Air-Atomized Spray Impingement

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Pages 78-96 | Received 17 Jan 2014, Accepted 30 Jun 2014, Published online: 20 Aug 2015

References

  • U. Alam, J. Krol, E. Specht, and J. Schmidt, Enhancement and Local Regulation of Metal Quenching Using Atomized Sprays, Journal of ASTM International, vol. 5, pp. 1–10, 2008.
  • H. Robidou, H. Auracher, P. Gardin, and M. Lebouché, Controlled Cooling of a Hot Plate with a Water Jet, Exp. Thermal Fluid Sci., vol. 26, pp. 123–129, 2002.
  • S. S. Mohapatra, S. V. Ravikumar, A. Varma, S. K. Pal, and S. Chakraborty, Experimental Investigation of Ultrafast Cooling of Hot Steel Plate by Surfactant Added Water Jet, J. Heat Transf., vol. 135, pp. 032101-1–7, 2013.
  • Z. H. Liu and J. Wang, Study on Film Boiling Heat Transfer for Water Jet Impinging on High Temperature Flat Plate, Int. J. Heat Mass Transf., vol. 44, pp. 2475–2481, 2001.
  • R.-H. Chen, L. C. Chow, and J. E. Navedo, Effects of Spray Characteristics on Critical Heat Flux in Subcooled Water Spray Cooling, Int. J. Heat Mass Transf., vol. 45, pp. 4033–4043, 2002.
  • S. V. Ravikumar, J. M. Jha, I. Sarkar, S. S. Mohapatra, S. K. Pal, and S. Chakraborty, Achievement of Ultrafast Cooling Rate in a Hot Steel Plate by Air-Atomized Spray with Different Surfactant Additives, Exp. Thermal Fluid Sci., vol. 50, pp. 79–89, 2013.
  • S. V. Ravikumar, J. M. Jha, S. S. Mohapatra, S. K. Pal, and S. Chakraborty, Influence of Ultrafast Cooling on Microstructure and Mechanical Properties of Steel, Steel Res. Int., vol. 84, pp. 1157–1170, 2013.
  • S. S. Mohapatra, S. V. Ravikumar, S. K. Pal, and S. Chakraborty, Ultra Fast Cooling of a Hot Steel Plate by Using High Mass Flux Air Atomized Spray, Steel Res. Int., vol. 84, pp. 229–236, 2013.
  • S. Ravikumar, J. Jha, S. Mohapatra, A. Sinha, S. Pal, and S. Chakraborty, Experimental Study of the Effect of Spray Inclination on Ultrafast Cooling of a Hot Steel Plate, Heat Mass Transf., vol. 49, pp. 1509–1522, 2013.
  • S. S. Mohapatra, S. V. Ravikumar, S. Andhare, S. Chakraborty, and S. K. Pal, Experimental Study and Optimization of Air Atomized Spray with Surfactant Added Water to Produce High Cooling Rate, J. Enhanced Heat Transf., vol. 19, pp. 397–408, 2012.
  • P. Bhattacharya, A. N. Samanta, and S. Chakraborty, Spray Evaporative Cooling to Achieve Ultra Fast Cooling in Runout Table, Int. J. Thermal Sci., vol. 48, pp. 1741–1747, 2009.
  • D. A. Zumbrunnen, Method and Apparatus for Measuring Heat Transfer Distributions on Moving and Stationary Plates Cooled by a Planar Liquid Jet, Exp. Thermal Fluid Sci., vol. 3, pp. 202–213, 1990.
  • H. Chattopadhyay and S. K. Saha, Simulation of Laminar Slot Jets Impinging on a Moving Surface, J. Heat Transf., vol. 124, pp. 1049–1055, 2002.
  • G. G. Nasr, R. A. Sharief, and A. J. Yule, High Pressure Spray Cooling of a Moving Surface, J. Heat Transf., vol. 128, pp. 752–760, 2006.
  • N. Hatta and H. Osakabe, Numerical Modeling for Cooling Process of a Moving Hot Plate by a Laminar Water Curtain, ISIJ Int., vol. 29, pp. 919–925, 1989.
  • S.-J. Chen, J. Kothari, and A. A. Tseng, Cooling of a Moving Plate with an Impinging Circular Water Jet, Exp. Thermal Fluid Sci., vol. 4, pp. 343–353, 1991.
  • S. Vakili and M. S. Gadala, Boiling Heat Transfer of Multiple Impinging Jets on a Hot Moving Plate, Heat Transf. Eng., vol. 34, pp. 580–595, 2012.
  • D. M. Trujillo and H. R. Busby, INTEMP, Inverse Heat Transfer Analysis User's Manual, Trucomp Co., Fountain Valley, Canada, pp. 1–48, 2003.
  • S. S. Mohapatra, J. M. Jha, S. V. Ravikumar, A. Singh, C. Bhatacharya, S. K. Pal, and S. Chakraborty, Effect of Oxide Layer in the Ultra Fast Cooling of a Steel Plate, Exp. Heat Transf., 2013. DOI:10.1080/08916152.2013.845624.
  • S. S. Mohapatra, J. M. Jha, K. Srinath, S. K. Pal, and S. Chakraborty, Enhancement of Cooling Rate for a Hot Steel Plate Using Air-Atomized Spray with Surfactant-Added Water, Exp. Heat Transf., vol. 27, pp. 72–90, 2014.
  • S. S. Mohapatra, S. Chakraborty, and S. K. Pal, Experimental Studies on Different Cooling Processes to Achieve Ultra-Fast Cooling Rate for Hot Steel Plate, Exp. Heat Transf., vol. 25, pp. 111–126, 2012.
  • H. Wang, W. Yu, and Q. Cai, Experimental Study of Heat Transfer Coefficient on Hot Steel Plate During Water Jet Impingement Cooling, J. Mater. Process. Technol., vol. 212, pp. 1825–1831, 2012.

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