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Articles

Experimental Investigation of Heat Transfer Enhancement in Rectangular Duct with Pentagonal Ribs

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References

  • R. L. Webb, Principles of Enhanced Heat Transfer. New York. NY: John Wiley and Sons, 1994.
  • J. C. Han, Park, JS, and C. K. Lei, “Heat transfer enhancement in channels with turbulence promoters,” ASME J. Eng. Gas Turbines Power, vol. 107, no. 3, pp. 628–635, 1985. DOI:10.1115/1.3239782.
  • S. Acharya, S. Dutta, T. A. Myrum, and R. S. Baker, “Periodically developed flow and heat transfer in a ribbed duct,” Int. J. Heat Mass Transfer, vol. 36, no. 8, pp. 2069–2082, 1993. DOI:10.1016/S0017-9310(05)80138-3.
  • A. Tariq, K. Singh, and P. K. Panigrahi, “Flow and heat transfer in rectangular duct with single rib and two ribs mounted on the bottom surface,” J. Enhanced Heat Transfer, vol. 10, no. 1, pp. 171–198, 2003. DOI:10.1615/JEnhHeatTransf.v10.i2.50.
  • T. M. Liou, C. C. Chen, and T. W. Tsai, “Heat transfer and fluid flow in a square duct with 12 different shaped vortex generators,” J. Heat Transfer, vol. 122, no. 2, pp. 327–335, 2000. DOI:10.1115/1.521487.
  • Z. X. Yuan, and W. Q. Tao, “Experimental study on heat transfer in ducts with winglet disturbances,” Heat Transfer Eng., vol. 24, no. 2, pp. 76–84, 2003. DOI:10.1080/01457630304086.
  • A. Akcayoglu, and C. Nazli, “A comprehensive numerical study on thermo-hydraulic performance of fluid flow in triangular ducts with delta-winglet vortex generators,” Heat Transfer Eng., 2017. DOI:10.1080/01457632.2017.1288046
  • H. E. Ahmed, and M. Z. Yusoff, “Thermal enhancement of triangular ducts using compound of vortex generators and nanofluids,” Heat Transfer Eng., 2017. DOI:10.1080/01457632.2017.1312874.
  • S. Chamoli, and N. S. Thakur, “Thermal behavior in rectangular channel duct fitted with V-shaped perforated baffles,” Heat Transfer Eng., vol. 36, no. 5, pp. 471–479, 2015. DOI:10.1080/01457632.2014.935218.
  • B. Gao, Q. Bi, and M. Gui, “Experimental performance comparison of shell-side heat transfer for shell-and-tube heat exchangers with different helical baffles,” Heat Transfer Eng., vol. 37, no. 18, pp. 1566–1578, 2016. DOI:10.1080/01457632.2016.1151300.
  • K. J. Sa, A. Afzal, and K. Y. Kim, “Performance analysis and design optimization of gapped pin-fin in a cooling channel,” Heat Transfer Eng., 2017. DOI:10.1080/01457632.2017.1320170.
  • B. Sunden, and G. Xie, “Gas turbine blade tip heat transfer and cooling: A literature survey,” Heat Transfer Eng., vol. 31, no. 7, pp. 527–554, 2010. DOI:10.1080/01457630903425320.
  • J. C. Han, S. Dutta, and S. Ekkad, Gas Turbine Heat Transfer and Cooling Technology, 2nd ed., New York: CRC Press, Taylor and Francis group, 2012.
  • J. C. Han, L. R. Glicksman, and W. M. Rohsenow, “Heat transfer and friction for rib roughened surfaces,” Int. J. Heat Mass Transfer, vol. 21, no. 8, pp. 1143–1156, 1978. DOI:10.1016/0017-9310(78)90113-8.
  • J. C. Han, and J. S. Park, “Developing heat transfer in rectangular channels with rib turbulators,” Int. J. Heat Mass Transfer, vol. 31, no. 1, pp. 183–195, 1988. DOI:10.1016/0017-9310(88)90235-9.
  • D. A. Aliaga, J. P. Lamb, and D. E. Klein, “Convection heat transfer distributions over plates with square ribs from infrared thermography measurements,” Int. J. Heat Mass Transfer, vol. 37, no. 3, pp. 363–374, 1994. DOI:10.1016/0017-9310(94)90071-X.
  • G. Rau, M. Cakan, 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. Turbomachinery, vol. 120, no. 2, pp. 368–375, 1998. DOI:10.1115/1.2841415.
  • J. J. Hwang, “Heat transfer-friction characteristic comparison in rectangular ducts with slit and solid ribs mounted on one wall,” ASME J. Heat Transfer, vol. 120, no. 3, pp. 709–716, 1998. DOI:10.1115/1.2824340.
  • M. E. Taslim, T. Li, and S. D. Spring, “Measurements of heat transfer coefficients and friction factors in passages rib-roughened on all walls,” ASME J. Turbomachinery, vol. 120, no. 3, pp. 564–570, 1998. DOI:10.1115/1.2841754.
  • P. R. Chandra, C. R. Alexander, and J. C. Han, “Heat transfer and friction behaviors in rectangular channels with varying number of ribbed walls,” Int. J. Heat Mass Transfer, vol. 46, no. 3, pp. 481–495, 2003. DOI:10.1016/S0017-9310(02)00297-1.
  • S. V. Ekkad, G. Pamula, and M. Shantiniketanam, “Detailed heat transfer measurements inside straight and tapered two-pass channels with rib turbulators,” Exp. Therm. Fluid Sci., vol. 22, no. 3–4, pp. 155–163, 2000. DOI:10.1016/S0894-1777(00)00022-4.
  • S. W. Chang, T. L. Yang, and W. J. Wang, “Heat transfer in a rotating twin-pass trapezoidal-sectioned passage roughened by skewed ribs on two opposite walls,” Heat Transfer Eng., vol. 27, no. 10, pp. 63–79, 2006. DOI:10.1080/01457630600908602.
  • T. T. Chandratilleke, N. Nadim, and R. Narayanaswamy, “Analysis of secondary flow instability and forced convection in fluid flow through rectangular and elliptical curved ducts,” Heat Transfer Eng., vol. 34, no. 14, pp. 1237–1248, 2013. DOI:10.1080/01457632.2013.777249.
  • I. Mayo, T. Arts, A. El-Habib, and B. Parres, “Two-dimensional heat transfer distribution of a rotating ribbed channel at different reynolds numbers,” J. Turbomachinery, vol. 137, no. 3, pp. 031002-1–11, 2015.
  • O. Yemenici, and H. Umur, “Experimental aspects of heat transfer enhancement over various flow surfaces,” Heat Transfer Eng., vol. 37, no. 5, pp. 435–442, 2016. DOI:10.1080/01457632.2015.1057449.
  • J. F. Lockett, and M. W. Collins, “Holographic interferometry applied to rib-roughness heat transfer in turbulent flow,” Int. J. Heat Mass Transfer, vol. 33, no. 11, pp. 2439–2449, 1990. DOI:10.1016/0017-9310(90)90002-C.
  • 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, no. 4, pp. 931–940, 1993. DOI:10.1016/S0017-9310(05)80277-7.
  • P. R. Chandra, M. L. Fontenot, and J. C. Han, “Effect of rib profiles on turbulent channel flow heat transfer,” AIAA J. Thermophy. Heat Transfer, vol. 12, no. 1, pp. 116–118, 1998. DOI:10.2514/2.6312.
  • S. W. Ahn, “The effect of roughness type on friction factors and heat transfer in roughened rectangular duct,” Int. Commun. Heat Mass Transfer, vol. 28, no. 7, pp. 933–942, 2001. DOI:10.1016/S0735-1933(01)00297-4.
  • L. Wang, and B. Sunden, “Experimental investigation of local heat transfer in a square duct with various-shaped ribs,” Heat Mass Transfer, vol. 43, no. 8, pp. 759–766, 2007. DOI:10.1007/s00231-006-0190-y.
  • J. Ahn, H. Choi, and J. S. Lee, “Large eddy simulation of flow and heat transfer in a channel roughened by square or semicircle ribs,” ASME J. Turbomachinery, vol. 127, no. 2, pp. 263–269, 2005. DOI:10.1115/1.1811098.
  • S. Eiamsa-ard, and W. Changcharoen, “Analysis of turbulent heat transfer and fluid flow in channels with various ribbed internal surfaces,” J. Therm. Sci., vol. 20, no. 3, pp. 260–267, 2011. DOI:10.1007/s11630-011-0468-3.
  • M. A. Moon, M. J. Park, and K. Y. Kim, “Evaluation of heat transfer performances of various rib shapes,” Int. J. Heat Mass Transfer, vol. 71, pp. 275–284, 2014. DOI:10.1016/j.ijheatmasstransfer.2013.12.026.
  • M. S. Ali, A. Tariq, and B. K. Gandhi, “Flow and heat transfer investigation behind trapezoidal rib using PIV and LCT measurements,” Exp. Fluids, vol. 54, no. 5, pp. 1520:1–15, 2013. DOI:10.1007/s00348-013-1520-8.
  • M. S. Ali, A. Tariq, and B. K. Gandhi, “Role of chamfering angles and flow through slit on heat transfer augmentation behind a surface-mounted rib,” J. Heat Transfer, vol. 138, no. 11, pp. 111901–1–16, 2016. DOI:10.1115/1.4033747.
  • A. Tariq, P. K. Panigrahi, and K. Muralidhar, “Flow and heat transfer in the wake of a surface mounted rib with a slit,” Exp. Fluids, vol. 37, no. 5, pp. 701–719, 2004. DOI:10.1007/s00348-004-0861-8.
  • N. Sharma, A. Tariq, M. Mishra, “Detailed heat transfer investigation inside a rectangular duct with an array of ventilated rib turbulators,” in Fluid Mechanics and Fluid Power – Contemporary Research, Eds. A. K., Saha, D., Das, R., Srivastava, P. K., Panigrahi, K., Muralidhar, Book Chapter-73, India: Springer, 2017.
  • N. Sharma, A. Tariq, M. Mishra, “Detailed heat transfer and friction factor characteristics in a rectangular duct with rib turbulators,” in Proc. 42nd Natl Fluid Mech. Fluid Power Conf., NITK Surathkal, Karnataka, India, FMFP 2015–69, December 14–16, 2015.
  • G. Tanda, “Effect of rib spacing on heat transfer and friction in a rectangular channel with 45° angled rib turbulators on one/two walls,” Int. J. Heat Mass Transfer, vol. 54, no. 5–6, pp. 1081–1090, 2011. DOI:10.1016/j.ijheatmasstransfer.2010.11.015.
  • P. Singh, and S. V. Ekkad, “Experimental study of heat transfer augmentation in a two-pass channel featuring V-shaped ribs and cylindrical dimples,” Appl. Therm. Eng., vol. 116, pp. 205–216, 2017. DOI:10.1016/j.applthermaleng.2017.01.098.
  • N. Sharma, A. Tariq, M. Mishra, “Effect of pentagonal ribs on local heat transfer and friction factor in a rectangular channel,” in Proc. 23rd Natl. Heat Mass Transfer Conf. 1st Intl. ISHMT-ASTFE Heat Mass Transfer Conf., Thiruvananthapuram, India, Paper 671, December 17–20, 2015.
  • M. L. Tam, A. J. Ghajar, and K. H. Tam, “Contribution analysis of dimensionless variables for laminar and turbulent flow convection heat transfer in a horizontal tube using artificial neural network, ” Heat Transfer Eng., vol. 29, no. 9, pp. 793–804, 2008. DOI:10.1080/01457630802053827.
  • Y. T. Yang, and P. J. Chen, “Numerical optimization of turbulent flow and heat transfer characteristics in a ribbed channel,” Heat Transfer Eng., vol. 36, no. 3, pp. 290–302, 2015. DOI:10.1080/01457632.2014.916158.
  • H. Safikhani, S. Eiamsa-Ard, “Multi-objective optimization of turbulent tube flows over diamond-shaped turbulators,” Heat Transfer Eng., vol. 37, no. 18, pp. 1579–1584, 2016. DOI:10.1080/01457632.2016.1151304.
  • S. Caliskan, M. N. Khalaji, S. Baskaya, I. Kotcioglu, “Design analysis of impinging jet array heat transfer from a surface with V-shaped and convergent–divergent ribs by the taguchi method,” Heat Transfer Eng., vol. 37, no. 15, pp. 1252–1266, 2016. DOI:10.1080/01457632.2015.1119596.
  • D. L. Schultz, and T. V. Jones, Heat Transfer Measurements in Short Duration Hypersonic Facilities. Paris, France: NATO Advisory Group for Aerospace Research and Development, 1973.
  • S. J. Kline, and F. A. McClintock, “Describing uncertainties in single sample experiments,” J. Mech. Eng., vol. 75, no. 1, pp. 3–8, 1953.
  • D. J. Farina, J. M. Hacker, R. J. Moffat, J. K. Eaton, “Illuminant invariant calibration of thermochromic liquid crystals,” Exp. Therm. Fluid Sci., vol. 9, no. 1, pp. 1–12, 1994. DOI:10.1016/0894-1777(94)90002-7.
  • W. M. Kays, M. E. Crawford, Convective Heat and Mass Transfer. 3rd edition, New York: McGraw-Hill Inc., 1993.

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