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TECHNICAL PAPERS: Internal Combustion Engines: Flow, heat transfer, and combustion

Forced Convective Heat Transfer of Parallel-Mode Reciprocating Tube Fitted With a Twisted Tape With Application to Piston Cooling

[+] Author and Article Information
S. W. Chang

Department of Marine Engineering, National Kaohsiung Institute of Marine Technology, Post Code 811 Kaohsiung, Taiwan, R.O.C.e-mail: swchang@mail.nkimt.edu.tw

J. Eng. Gas Turbines Power 123(1), 146-156 (Oct 09, 2000) (11 pages) doi:10.1115/1.1340627 History: Received April 12, 1999; Revised October 09, 2000
Copyright © 2001 by ASME
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References

Date,  A. W., 1974, “Prediction of Fully-Developed Flow in a Tube Containing a Twisted-Tape,” Int. J. Heat Mass Transf., 17, pp. 845–859.
Hong,  S. W., and Bergles,  A. E., 1976, “Augmentation of Laminar Flow Heat Transfer in Tubes by Means of Twisted-Tape Inserts,” ASME J. Heat Transfer., 98, pp. 251–256.
Marner,  W. J., Bergles,  A. E., and Chenoweth,  J. M., 1983, “On the Presentation of Performance Data for Enhanced Tubes Used in Shell-and-Tube Heat Exchangers,” ASME J. Heat Transfer, 105, pp. 358–365.
Manglik,  R. M., and Bergles,  A. E., 1988, “Laminar Flow Heat Transfer in a Semi-Circular Tube With Uniform Wall Temperature,” Int. J. Heat Mass Transf., 31, No. 3, pp. 625–636.
Agarwal,  S. K., and Rao,  Raja M., 1996, “Heat Transfer Augmentation for the Flow of a Viscous Liquid in Circular Tubes Using Twisted Tape Inserts,” Int. J. Heat Mass Transf., 39, No. 17, pp. 3547–3557.
Chang,  S. W., and Su,  L. M., 1997, “Influence of Reciprocating Motion on Heat Transfer Inside Ribbed Duct With Application to Piston Cooling in Marine Diesel Engine,” J. Ship Res., 41, No. 4, pp. 332–339.
Nishimura,  T., and Kojima,  N., 1995, “Mass Transfer Enhancement in a Symmetric Sinusoidal Wavy-Walled Channel for Pulsatile Flow,” Int. J. Heat Mass Transf., 38, No. 9, pp. 1719–1731.
Hu,  H. C., and Kelly,  R. E., 1997, “Stabilization of Longitudinal Vortex Instabilities by Means of Transverse Flow Oscillations,” J. Phys. Fluids, 9, No. 3, pp. 648–654.
Editorial Board of ASME Heat Transfer, 1993, “Journal of Heat Transfer Policy on Reporting Uncertainties in Experimental Measurements and Results,” ASME J. Heat Transfer, 115, pp. 5–6.
Dittus,  F. W., and Boelter,  L. M. K., 1930, Univ. California Publs. J. Engn., 2, pp. 443–461.
Zabielski,  L., and Mestel,  A. J., 1998, “Unsteady Blood Flow in a Helically Symmetric Pipe,” J. Fluid Mech., 370, pp. 321–345.
Lyne,  W. H., 1971, “Unsteady Viscous Flow in Curved Pipe,” J. Fluid Mech., 45, pp. 13–31.
Chang,  S. W., Su,  L. M., Yang,  T. L., and Hwang,  C. C., 1999, “An Experimental Study of Heat Transfer in Reciprocating Square Duct Fitted With Ribs Skewed to the Flow,” ASME J. Heat Transfer, 121, pp. 232–236.
Chang,  S. W., Su,  L. M., Hwang,  C. C., and Yang,  T. L., 1999, “Heat Transfer in a Reciprocating Duct Fitted With Transverse Ribs,” J. Exp. Heat Transfer, 12, pp. 95–115.

Figures

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Schematic layout of the reciprocating test facility
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Constructional details of a test section
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Typical axial heat-transfer variations in a tube fitted with twisted tape
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Axial distributions of the heat-transfer performance ratio with various Reynolds numbers
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Axial distributions of a reciprocating Nusselt number with various buoyancy levels at pulsating numbers of 0.06 and 0.18
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Axial distributions of reciprocating Nusselt number with various pulsating and Reynolds numbers at reciprocating frequency of 0.83 Hz
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Normalized axial Nusselt number distributions at a pulsating number of 0.08
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Parametric presentation of overall reciprocating effects on heat transfer

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