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Research Article

Evaluation of prediction models on frictional pressure drop for condensation flow in horizontal circular tubes

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Pages 6305-6316 | Received 28 Nov 2022, Accepted 02 May 2023, Published online: 18 May 2023

References

  • A, M. H., A. Sarmadian, M. Shafaee, and H. Enayatollahi. 2020. Flow pattern maps, pressure drop and performance assessment of horizontal tubes with coiled wire inserts during condensation of R-600a. International Journal of Heat & Mass Transfer 148:119062. doi:10.1016/j.ijheatmasstransfer.2019.119062.
  • Chen, Y., Y. K. S, C. Y. J, and C. -C. Wang. 2001. Two-phase pressure drop of air–water and R-410A in small horizontal tubes. International Journal of Multiphase Flow 27 (7):1293–99.
  • Cioncolini, A., and L. Santini. 2016. Two-phase pressure drop prediction in helically coiled steam generators for nuclear power applications. International Journal of Heat & Mass Transfer 100:825–34. doi:10.1016/j.ijheatmasstransfer.2016.05.027.
  • Fang, X., B. Jiang, L. Yuan, Liang, Y., Ren, B., Tao, W., and Li, X. 2022. Experimental study on atomization characteristics of gas–liquid two-phase flow nozzle and its dust removal effect. Materials. 15(2):565. doi:10.3390/ma15020565.
  • Fang, X., X. Li, and Z. Luo. 2022. Predictive method for flow condensation heat transfer in plain channels. Physics of Fluids 34 (11):113321. doi:10.1063/5.0121943.
  • Ferraris, D. L., and C. P. Marcel. 2020. Two-phase flow frictional pressure drop prediction in helical coiled tubes. International Journal of Heat & Mass Transfer 162:120372. doi:10.1016/j.ijheatmasstransfer.2020.120372.
  • Friedel, L. Improved friction pressure drop correlation for horizontal and vertical two-phase pipe flow. Proc. of European Two-Phase Flow Group Meet. Ispra, Italy, 1979 1979.
  • Fries, S., S. Skusa, and A. Luke. 2019. Heat transfer and pressure drop of condensation of hydrocarbons in tubes. Heat and Mass Transfer 55 (1):33–40. doi:10.1007/s00231-018-2318-2.
  • Fuchs, P. H. Pressure drop and heat transfer during flow of evaporating liquid in horizontal tubes and bends[J]. PhD, Norwegian Institute of Technology, 1975.
  • Hashizume, K., H. Ogiwara, and H. Taniguchi. 1985. Flow pattern, void fraction and pressure drop of refrigerant two-phase flow in a horizontal pipe—II: Analysis of frictional pressure drop. International Journal of Multiphase Flow 11 (5):643–58. doi:10.1016/0301-9322(85)90084-9.
  • Kim, W. S., J. B. Lee, and K. H. Kim. 2021. Development of empirical correlation of two-phase pressure drop in moisture separator based on separated flow model. Energies 14 (15):4448. doi:10.3390/en14154448.
  • Kim, S. M., and I. Mudawar. 2012. Universal approach to predicting two-phase frictional pressure drop for adiabatic and condensing mini/micro-channel flows. International Journal of Heat & Mass Transfer 55 (11–12):3246–61. doi:10.1016/j.ijheatmasstransfer.2012.02.047.
  • K, B. M., K. Nakamura, K. Kariya, and A. Miyara. 2020. Development of a correlation for pressure drop of two-phase flow inside horizontal small diameter smooth and microfin tubes. International Journal of Refrigeration 119:80–91. doi:10.1016/j.ijrefrig.2020.08.013.
  • K, M. A., N. Sakamoto, H. Ubudiyah, K. Kariya, and A. Miyara. 2022. Experimental study and general correlation for frictional pressure drop of two-phase flow inside microfin tubes. International Journal of Refrigeration 144:342–53. doi:10.1016/j.ijrefrig.2022.07.017.
  • Li, Z., H. Jiang, X. Chen, and K. Liang. 2020. Evaporation heat transfer and pressure drop of low-gwp refrigerants in a horizontal tube. International Journal of Heat & Mass Transfer 148:119150. doi:10.1016/j.ijheatmasstransfer.2019.119150.
  • Li, H., and K. Tang. 2022. A comprehensive study of drop-in alternative mixtures for R134a in a mobile air-conditioning system. Applied Thermal Engineering 203:117914. doi:10.1016/j.applthermaleng.2021.117914.
  • Lockhart, R. W. 1949. Proposed correlation of data for isothermal two-phase, two-component flow in pipes. Chemical Engineering Progress 45:39–48.
  • M, A. S., N. Abbas, S. Abbas, H. M. Ali, I. Hussain, and M. M. Janjua. 2019. Experimental investigation of condensation pressure drop of R134a in smooth and grooved multiport flat tubes of automotive heat exchanger. International Journal of Heat & Mass Transfer 130:1087–95. doi:10.1016/j.ijheatmasstransfer.2018.11.018.
  • Müller-Steinhagen, H., and K. Heck. 1986. A simple friction pressure drop correlation for two-phase flow in pipes. Chemical Engineering and Processing: Process Intensification 20 (6):297–308. doi:10.1016/0255-2701(86)80008-3.
  • Nie, F., S. Yan, H. Wang, Zhao, C., Zhao, Y., and M. Gong. 2023. A universal correlation for predicting two-phase frictional pressure drop in horizontal tubes based on machine learning. International Journal of Multiphase Flow 160:104377. doi:10.1016/j.ijmultiphaseflow.2022.104377.
  • Nualboonrueng, T., and S. Wongwises. 2004. Two-phase flow pressure drop of HFC-134a during condensation in smooth and micro-fin tubes at high mass flux. International Communications in Heat and Mass Transfer 31 (7):991–1004. doi:10.1016/j.icheatmasstransfer.2004.05.009.
  • Rahman, M. M., K. Kariya, and A. Miyara. 2017. Comparison and development of new correlation for adiabatic two-phase pressure drop of refrigerant flowing inside a multiport minichannel with and without fins. International Journal of Refrigeration 82:119–29. doi:10.1016/j.ijrefrig.2017.06.001.
  • R, Z. X., C. G. F, X. Zou, Q. L. Song, and M. Q. Gong. 2017. Experimental investigation on flow condensation of methane in a horizontal smooth tube. International Journal of Refrigeration 78:193–214. doi:10.1016/j.ijrefrig.2017.03.021.
  • R, Z. X., G. M. Q, X. Zou, G. F. Chen, and J. F. Wu. 2016. Experimental investigation on flow condensation heat transfer and pressure drop of R170 in a horizontal tube. International Journal of Refrigeration 66:105–20. doi:10.1016/j.ijrefrig.2016.02.010.
  • Singh, V., R. Kukreja, and S. S. Sehgal. 2022. Frictional pressure drop correlation for condensation of refrigerants in microchannel heat exchangers. Energy Sources, Part A: Recovery, Utilization, & Environmental Effects 44 (3):6568–80. doi:10.1080/15567036.2022.2100520.
  • Song, Q., G. Chen, H. Guo, Shen, J. and M. Gong. 2019. Two-phase flow condensation pressure drop of R14 in a horizontal tube: Experimental investigation and correlation development. International Journal of Heat & Mass Transfer 139:330–42. doi:10.1016/j.ijheatmasstransfer.2019.05.023.
  • Sun, L., K. Mishima Evaluation analysis of prediction methods for two-phase flow pressure drop in mini-channels[C]//International Conference on Nuclear Engineering, Orlando, Florida, USA. 2008, 48159: 649–58. doi:10.1115/ICONE16-48210.
  • S, C. Y., L. T. W, Y. S. S, and S, H. K. 2018. Pressure drop characteristics for two-phase flow of FC-72 in microchannel.Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 232 (6):987–997. doi:10.1177/0954406217694214.
  • Tang, J., L. Sun, H. Liu, H. Liu, and Z. Mo. 2022. Review on direct contact condensation of vapor bubbles in a subcooled liquid. Experimental and Computational Multiphase Flow 4:1–22. doi:10.1007/s42757-020-0100-4.
  • T, M. M., B. M. A. A, B. Sajadi, P. Razi, and M. I. Zakaria. 2020. Experimental study of heat transfer coefficient, pressure drop and flow pattern of R1234yf condensing flow in inclined plain tubes. International Journal of Heat & Mass Transfer 160:120199. doi:10.1016/j.ijheatmasstransfer.2020.120199.
  • Wang, R., and S. Kabelac. 2021. Condensation quasi-local heat transfer and frictional pressure drop of R1234ze (E) and R134a in a micro-structured plate heat exchanger. Applied Thermal Engineering 197:117404. doi:10.1016/j.applthermaleng.2021.117404.
  • Wang, P., M. Li, Q. Wang, B., Dai, Y., Ma, and H. Tian. 2023. Heat transfer and pressure drop of CO2/R32 mixture in mini-channel. International Journal of Heat & Mass Transfer 200:123406. doi:10.1016/j.ijheatmasstransfer.2022.123406.
  • Xu, Y., and X. Fang. 2013. A new correlation of two-phase frictional pressure drop for condensing flow in pipes. Nuclear Engineering & Design 263:87–96. doi:10.1016/j.nucengdes.2013.04.017.
  • Yin, B. T., X. F. Li, and G. Liu. 2018. A mechanistic model of heat transfer for gas–liquid flow in vertical wellbore annuli. Petroleum Science 15 (1):135–45. doi:10.1007/s12182-017-0193-y.
  • Yu, J., X. Li, and Z. Zhu. 2022. Study on condensation flow and heat transfer characteristics of multicomponent mixture in dimple tube. Case Studies in Thermal Engineering 35:102132. doi:10.1016/j.csite.2022.102132.
  • Zhang, M., and R. L. Webb. 2001. Correlation of two-phase friction for refrigerants in small-diameter tubes. Experimental Thermal & Fluid Science 25 (3–4):131–39. doi:10.1016/S0894-1777(01)00066-8.

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