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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 32, 2019 - Issue 2
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Articles

Development of new correlations for heat transfer and friction loss of solid ring with combined square wing twisted tape inserts heat exchanger tube

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Pages 179-200 | Received 11 Nov 2017, Accepted 23 Jul 2018, Published online: 03 Dec 2018

References

  • Y. Z. Cui and M. C. Tian, “Three-dimensional numerical simulation of thermal-hydraulic performance of a circular tube with edgefold-twisted-tape inserts,” J. Hydrodyn., vol. 22, pp. 662–670, 2010.
  • G. Zhang, X. Leng, N. Zhou, Y. Shi, and L. Li, “Flow and heat transfer characteristics around egg-shaped tube,” J. Hydrodyn. Ser. B, vol. 27, pp. 76–84, 2015.
  • A. R. S. Suri, A. Kumar, and R. Maithani, “Convective heat transfer enhancement techniques of heat exchanger tubes: a review,” Int. J. Ambient. Energy, vol. 39, pp. 649–670, 2018.
  • S. Kumar, A. D. Kothiyal, M. S. Bisht, and A. Kumar, “Turbulent heat transfer and nanofluid flow in a protruded ribbed square passage,” Results Phys., vol. 7, pp. 3603–3618, 2017.
  • A. Behnampour, et al. “Analysis of heat transfer and nanofluid fluid flow in microchannels with trapezoidal, rectangular and triangular shaped ribs,” Physica. E. Low. Dimens. Syst. Nanostruct, vol. 91, pp. 15–31, 2017.
  • W. H. Azmi, K. V. Sharma, R. Mamat, and S. Anuar, “Turbulent forced convection heat transfer of nanofluids with twisted tape insert in a plain tube,” Energy Procedia, vol. 52, pp. 296–307, 2014.
  • O. R. Kummitha, V. R. Reddy Bandi, and K. M. Pandey, “3D numerical analysis for thermal-hydraulic characteristics of water flow inside a circular tube with twisted tape with helical protrusions,” Procedia. Eng., vol. 127, pp. 1134–1141, 2015.
  • J. D. Zhu and H. Chen, “Numerical study on enhanced heat transfer by twisted tape inserts inside tubes,” Procedia. Eng., vol. 130, pp. 256–262, 2015.
  • D. G. Kumbhar and N. K. Sane, “Exploring heat transfer and friction factor performance of a dimpled tube equipped with regularly spaced twisted tape inserts,” Procedia. Eng., vol. 127, pp. 1142–1149, 2015.
  • B. Salam, S. Biswas, S. Saha, and M. M. K. Bhuiya, “Heat transfer enhancement in a tube using rectangular-cut twisted tape insert,” Procedia. Eng., vol. 56, pp. 96–103, 2013.
  • S. Hossain, U. K. Deb, and K. A. Rahman, “The enhancement of heat transfer in a circular tube with insert and without insert by using the finite element method,” Procedia. Eng., vol. 105, pp. 81–88, 2015.
  • A. R. Singh Suri, A. Kumar, and R. Maithani, “Effect of square wings in multiple square perforated twisted tapes on fluid flow and heat transfer of heat exchanger tube,” Case. Stud. Thermal Eng., vol. 10, pp. 28–43, 2017.
  • S. R. Shabanian, M. Rahimi, M. Shahhosseini, and A. A. Alsaira, “CFD and experimental studies on heat transfer enhancement in an air cooler equipped with different tube inserts,” Int. Comm. Heat Mass. Transfer, vol. 38, pp. 383–390, 2011.
  • S. R. Krishna, G. Pathipaka, and P. Sivashanmugam, “Studies on heat transfer augmentation in a circular tube fitted with straight half twist left-right inserts in laminar flow,” J. Environ. Res. Dev., vol. 3, no. 2, pp.437–441, 2008.
  • A. V. Gawandare, P. M. M. Dange, and P. D. B. Nalawade, “Heat transfers enhancement with different square jagged twisted tapes,” Int. J. Eng. Res. Appl., vol. 4, no. 3, pp.619–624, 2014.
  • N. Mashoofi, S. Pourahmad, and S. M. Pesteei, “Study the effect of axially perforated twisted tapes on the thermal performance enhancement factor of a double tube heat exchanger,” Case. Stud. Thermal Eng., vol. 10, pp. 161–168, 2017.
  • A. Hasanpour, M. Farhadi, and K. Sedighi, “Intensification of heat exchangers performance by modified and optimized twisted tapes,” Chem. Eng. Process. Intensif., vol. 120, pp. 276–285, 2017.
  • A. Saysroy and S. Eiamsa-Ard, “Enhancing convective heat transfer in laminar and turbulent flow regions using multi-channel twisted tape inserts,” Int. J. Thermal Sci., vol. 121, pp. 55–74, 2017.
  • V. F. Dos Santos, F. J. De Souza, and C. A. R. Duarte, “Reducing bend erosion with a twisted tape insert,” Powder Technol., vol. 301, pp. 889–910, 2016.
  • I. Zeynali Famileh and J. Abolfazli Esfahani, “Experimental investigation of wet flue gas condensation using twisted tape insert,” Int. J. Heat. Mass. Transf, vol. 108, pp. 1466–1480, 2017.
  • Y. Hong, J. Du, and S. Wang, “Turbulent thermal, fluid flow and thermodynamic characteristics in a plain tube fitted with overlapped multiple twisted tapes,” Int. J. Heat. Mass. Transf, vol. 115, pp. 551–565, 2017.
  • N. Piriyarungrod, S. Eiamsa-Ard, C. Thianpong, M. Pimsarn, and K. Nanan, “Heat transfer enhancement by tapered twisted tape inserts,” Chem. Eng. Process. Intensif., vol. 96, pp. 62–71, 2015.
  • Y. C. Park, et al. “Effects of serpentine flow-field designs with different channel and rib widths on the performance of a direct methanol fuel cell,” J. Power. Sources, vol. 205, pp. 32–47, 2012.
  • O. Sadeghi, H. A. Mohammed, M. Bakhtiari-Nejad, and M. A. Wahid, “Heat transfer and nanofluid flow characteristics through a circular tube fitted with helical tape inserts,” Int. Comm. Heat Mass. Transfer, vol. 71, pp. 234–244, 2016.
  • S. Chokphoemphun, M. Pimsarn, C. Thianpong, and P. Promvonge, “Thermal performance of tubular heat exchanger with multiple twisted-tape inserts,” Chin. J. Chem. Eng., vol. 23, pp. 755–762, 2015.
  • S. S. Kumar, V. Hindasageri, and S. V. Prabhu, “Local heat transfer distribution on a flat plate impinged by a swirling jet generated by a twisted tape,” Int. J. Thermal Sci., vol. 111, pp. 351–368, 2017.
  • S. Tamna, Y. Kaewkohkiat, S. Skullong, and P. Promvonge, “Heat transfer enhancement in tubular heat exchanger with double V-ribbed twisted-tapes,” Case. Stud. Thermal Eng., vol. 7, pp. 14–24, 2016.
  • C. Man, J. Yao, and C. Wang, “The experimental study on the heat transfer and friction factor characteristics in tube with a new kind of twisted tape insert,” Int. Comm. Heat Mass. Transfer, vol. 75, pp. 124–129, 2016.
  • Ranjith and K. Shaji, “Numerical analysis on a double pipe heat exchanger with twisted tape induced swirl flow on both sides,” Procedia Technol., vol. 24, pp. 436–443, 2016.
  • J. P. Meyer and S. M. Abolarin, “Heat transfer and pressure drop in the transitional flow regime for a smooth circular tube with twisted tape inserts and a square-edged inlet,” Int. J. Heat. Mass. Transf, vol. 117, pp. 11–29, 2018.
  • P. Promvonge, “Thermal performance in square-duct heat exchanger with quadruple V-finned twisted tapes,” Appl. Thermal Eng., vol. 91, pp. 298–307, 2015.
  • V. Singh, S. Chamoli, M. Kumar, and A. Kumar, “Heat transfer and fluid flow characteristics of heat exchanger tube with multiple twisted tapes and solid rings inserts,” Chem. Eng. Process. Intensif., vol. 102, pp. 156–168, 2016.
  • W. Liu and B. Bai, “A numerical study on helical vortices induced by a short twisted tape in a circular pipe,” Case. Stud. Thermal Eng., vol. 5, pp. 134–142, 2015.
  • S. Eiamsa-Ard, C. Thianpong, and P. Promvonge, “Experimental investigation of heat transfer and flow friction in a circular tube fitted with regularly spaced twisted tape elements,” Int. Comm. Heat Mass. Transfer, vol. 33, pp. 1225–1233, 2006.
  • M. M. K. Bhuiya, A. K. Azad, M. S. U. Chowdhury, and M. Saha, “Heat transfer augmentation in a circular tube with perforated double counter twisted tape inserts,” Int. Comm. Heat Mass. Transfer, vol. 74, pp. 18–26, 2016.
  • M. Lehtimaki, A. Saamanen, and A. Taipale, “American Society of Heating, Refrigeration and Air Conditioning Engineers (ASHRAE),” Filtration, vol. 52, pp. 140, 2002.
  • H. W. Coleman and W. G. Steele, Experimentation, Validation, and Uncertainty Analysis for Engineers. 3rd ed. John Wiley & Sons, Inc., Hoboken, 2009.
  • M. J. Lewis, “Optimising the thermohydraulic performance of rough surfaces,” Int. J. Heat. Mass. Transf, vol. 18, pp. 1243–1248, 1975.
  • K. Wongcharee and S. Eiamsa-Ard, “Heat transfer enhancement by twisted tapes with alternate-axes and triangular, rectangular and trapezoidal wings,” Chem. Eng. Process. Process. Intensif., vol. 50, pp. 211–219, 2011.
  • E. Z. Ibrahim, “Augmentation of laminar flow and heat transfer in flat tubes by means of helical screw-tape inserts,” Energy. Convers. Manag., vol. 52, pp. 250–257, 2011.
  • P. Promvonge, “Thermal performance in circular tube fitted with coiled square wires,” Energy. Convers. Manag., vol. 49, pp. 980–987, 2008.
  • C. Vashistha, A. K. Patil, and M. Kumar, “Experimental investigation of heat transfer and pressure drop in a circular tube with multiple inserts,” Appl. Thermal Eng., vol. 96, pp. 117–129, 2016.
  • S. Eiamsa-Ard, V. Kongkaitpaiboon, and K. Nanan, “Thermohydraulics of turbulent flow through heat exchanger tubes fitted with circular-rings and twisted tapes,” Chin. J. Chem. Eng., vol. 21, pp. 585–593, 2013.
  • M. Sheikholeslami, M. Gorji-Bandpy, and D. D. Ganji, “Experimental study on turbulent flow and heat transfer in an air to water heat exchanger using perforated circular-ring,” Exp. Thermal Fluid Sci., vol. 70, pp. 185–195, 2016.
  • A. I. Nafsun, F. Herz, E. S. Specht, V. Scherer, and S. Wirtz, “Heat transfer experiments in a rotary drum for a variety of granular materials,” Exp. Heat. Transfer, vol. 29, pp. 520–535, 2016.
  • H. Umar, O. Yemenici, Y. Umur, and A. Sakin, “Flow and heat transfer characteristics over rectangular blocked surfaces,” Exp. Heat. Transfer, vol. 30, pp. 192–204, 2017.
  • A. Kumar, et al. “Single -phase thermal and hydraulic performance analysis of a V-pattern dimpled obstacles air passage,” Exp. Heat. Transfer, vol. 30, pp. 393–426, 2017.
  • B. Raei, F. Shahraki, and S. M. Peyghambarzadeh, “Experimental study of the effect of drag reducing agent on heat transfer and pressure drop characteristics,” Exp. Heat. Transfer, vol. 31, pp. 68–84, 2018.
  • A. R. S. Suri, A. Kumar, and R. Maithani, “Experimental determination of enhancement of heat transfer in a multiple square perforated twisted tape inserts heat exchanger tube,” Exp. Heat. Transfer, vol. 31, pp. 85–105, 2018.
  • R. Nadda, A. Kumar, R. Maithani, and R. Kumar, “Investigation of thermal and hydrodynamic jets solar air passage with protrusion with combination arc obstacle on the heated plate,” Exp. Heat. Transfer, vol. 31, pp. 232–250, 2018.

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