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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 31, 2018 - Issue 4
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Original Articles

Temperature mapping in a two-phase water-steam horizontal flow

, , , , , & show all
Pages 317-333 | Received 30 May 2017, Accepted 20 Nov 2017, Published online: 08 Jan 2018

References

  • D. Panahi, “Evaluation of Nusselt number and effectiveness for a vertical shell-coiled tube heat exchanger with air bubble injection into shell side,” Experimental Heat Transfer, [online] 30, 3. 179–191, 2017. ISSN 0891-6152. Dostupné z: DOI: 10.1080/08916152.2016.1233145.
  • S. Nukiyama, “The maximum and minimum values of the heat Q transmitted from metal to boiling water under atmospheric pressure,” International Journal of Heat and Mass Transfer, [online] 9, 12. 1419–1433, 1966. ISSN 00179310. Dostupné z: DOI: 10.1016/0017-9310(66)90138-4.
  • S. C. Cheng, W. W. L. Ng, and K. T. Heng, “Measurements of boiling curves of subcooled water under forced convective conditions,” International Journal of Heat and Mass Transfer, [online] 21, 11. 1385–1392, 1978. ISSN 0017-9310. Dostupné z: DOI: 10.1016/0017-9310(78)90202-8.
  • M. M. Shah, “Chart correlation for saturated boiling heat transfer: Equations and further study,” ASHRAE Trans.;(United States)., 88, 185–196 1982. (CONF-820112-)
  • S. G. Kandlikar, “G. A general correlation for saturated two-phase flow boiling heat transfer inside horizontal and vertical tubes,” Journal of Heat Transfer., 112, 1. 219–228. 1990, DOI: 10.1115/1.2910348.
  • K. E. Gungor and A. R. H. S. Winterton, “A general correlation for flow boiling in tubes and annuli,” International Journal of Heat and Mass Transfer, [online] 29, 3. 351–358, 1986. ISSN 0017-9310. Dostupné z: DOI: 10.1016/0017-9310(86)90205-X.
  • R. Bird, W. E. Byron, and N. STEWART Edwin, “LIGHTFOOT,” Transport Phenomena, B.m: John Wiley & Sons, 2007, ISBN 978-0-470-11539-8.
  • A. Kundu, R. Kumar, and A. Gupta, “Heat transfer characteristics and flow pattern during two-phase flow boiling of R134a and R407C in a horizontal smooth tube,”Experimental Thermal and Fluid Science, [online] 57, 344–352, 2014. ISSN 0894-1777. Dostupné z: DOI: 10.1016/j.expthermflusci.2014.05.020.
  • L. Wojtan, T. Ursenbacher, and J. R. Thome, “Investigation of flow boiling in horizontal tubes: part I—A new diabatic two-phase flow pattern map,” International Journal of Heat and Mass Transfer, [online] 48, 14. 2955–2969, 2005. ISSN 0017-9310. Dostupné z: DOI: 10.1016/j.ijheatmasstransfer.2004.12.012.
  • M. Ozawa, et al., “Flow pattern and boiling heat transfer of CO2 in horizontal small-bore tubes,” International Journal of Multiphase Flow, [online] 35, 8. 699–709, 2009. ISSN 0301-9322. Dostupné z: DOI: 10.1016/j.ijmultiphaseflow.2009.04.003.
  • K. H. A. L. I. L. I. Sadaghiani and K. O. Ş. A. R. Abdolali a Ali, “Numerical and experimental investigation on the effects of diameter and length on high mass flux subcooled flow boiling in horizontal microtubes,”International Journal of Heat and Mass Transfer, [online] 92, 824–837, 2016. ISSN 0017-9310. Dostupné z: DOI: 10.1016/j.ijheatmasstransfer.2015.09.004.
  • P. Terdtoon, M. Chailungkar, S. Ritthidej, and M. Shiraishi, “Effects of bond numbers on internal flow patterns of an inclined, closed, two-phase thermosyphon at normal operating conditions,” Experimental Heat Transfer, [online] 10, 4. 233–251, 1997. ISSN 0891-6152, 1521-0480. Dostupné z: DOI: 10.1080/08916159708946546.
  • G. Ribatski, “A critical overview on the recent literature concerning flow boiling and two-phase flows inside micro-scale channels,” Experimental Heat Transfer, [online] 26, 2–3. 198–246, 2013. ISSN 0891-6152, 1521-0480. Dostupné z: DOI: 10.1080/08916152.2012.737189.
  • J. Launay, N. Allanic, P. Mousseau, R. Deterre, and Y. Madec, “Intrusive measurement of polymer flow temperature,” Polymer Engineering & Science, [online] 54, 12. 2806–2814, 2014. ISSN 1548-2634. Dostupné z: DOI: 10.1002/pen.23839.
  • Y. Yan and Y. Zu, “Numerical simulation of bubbles deformation, flow, and coalescence in a microchannel under pseudo-nucleation conditions,” Heat Transfer Engineering, [online] 32, 13–14. 1182–1190, 2011. ISSN 0145-7632. Dostupné z: DOI: 10.1080/01457632.2011.562731.
  • Z. Yang, X. F. Peng, and P. Ye, “Numerical and experimental investigation of two phase flow during boiling in a coiled tube,” International Journal of Heat and Mass Transfer, [online] 51, 5–6. 1003–1016, 2008. ISSN 0017-9310. Dostupné z: DOI: 10.1016/j.ijheatmasstransfer.2007.05.025.
  • D. E. Schepper, C. K. Sandra, J. Geraldine, H. E. Y. N. D. E. R. I. C. K. X. Guy, and B. Marin, “Modeling the evaporation of a hydrocarbon feedstock in the convection section of a steam cracker,” Computers & Chemical Engineering, [online] 33, 1. 122–132, 2009. ISSN 0098-1354. Dostupné z: DOI: 10.1016/j.compchemeng.2008.07.013.
  • M. Rakhsha, A. K. B. A. R. I. D. O. U. S. T. Farzan, A. Abbassi, and S.-A. Majid, “Experimental and numerical investigations of turbulent forced convection flow of nano-fluid in helical coiled tubes at constant surface temperature,”Powder Technology, [online] 283, 178–189, 2015. ISSN 0032-5910. Dostupné z: DOI: 10.1016/j.powtec.2015.05.019.
  • R. Röhrig, S. Jakirlić, and C. Tropea, “Comparative computational study of turbulent flow in a 90° pipe elbow,”Special Issue Devoted to the 10th Int. Symposium on Engineering Turbulence Modelling and Measurements (ETMM10) Held in Marbella, Spain on September 17-19, 2014, [online] 55, 120–131, 2015. ISSN 0142-727X. Dostupné z: DOI: 10.1016/j.ijheatfluidflow.2015.07.011.
  • E. Rahim, R. E. V. E. L. L. I. N. Remi, J. Thome, and A. Bar-Cohen, “Characterization and prediction of two-phase flow regimes in miniature tubes,” International Journal of Multiphase Flow, [online] 37, 1. 12–23, 2011. ISSN 0301-9322. Dostupné z: DOI: 10.1016/j.ijmultiphaseflow.2010.09.002.
  • S. Kandlikar, “Heat transfer mechanisms during flow boiling in microchannels,” Journal of Heat Transfer, [online] 126, 1. 8, 2004. ISSN 00221481. Dostupné z: DOI: 10.1115/1.1643090.
  • TUOH. A. P. Hrnjak, “Periodic reverse flow and boiling fluctuations in a microchannel evaporator of an r134a mobile air-conditioning system,” SAE International Journal of Materials and Manufacturing., [online]6, 3. 540–548, 2013. ISSN 1946-3987. Dostupné z: DOI: 10.4271/2013-01-1500.
  • P. Balasubramanian, G. Satish, and Kandlikar G, “Experimental study of flow patterns, pressure drop, and flow instabilities in parallel rectangular minichannels,” Heat Transfer Engineering, [online] 26, 3. 20–27, 2005. ISSN 0145-7632, 1521-0537. Dostupné z: DOI: 10.1080/01457630590907167.
  • D. Deng, Q. Huang, W. Wan, W. Zhou, and Y. Lian, “Experimental study on flow boiling pressure drop and flow instabilities of reentrant micro-channels,” Experimental Heat Transfer, [online] 29, 6. 811–832, 2016. ISSN 0891-6152. Dostupné z: DOI: 10.1080/08916152.2016.1161677.
  • R. Ali, B. Palm, and M. H. Maqbool, “Flow boiling heat transfer of refrigerants r134a and r245fa in a horizontal micro-channel,” Experimental Heat Transfer, [online] 25, 3. 181–196, 2012. ISSN 0891-6152, 1521-0480. Dostupné z: DOI: 10.1080/08916152.2011.609962.
  • B. Suhas and G. A. Sathyabhama, “Heat transfer and force balance approaches in bubble dynamic study during subcooled flow boiling of water–ethanol mixture,”Experimental Heat Transfer, [online] 1–21, 2017. ISSN 0891-6152. Dostupné z: DOI: 10.1080/08916152.2017.1328469.
  • F. Kreith, R. M. MANGLIK a M. S. BOHN. Principles of Heat Transfer [online]. B.m.: Cengage Learning, 2010. ISBN 978-0-495-66770-4. Dostupné z: https://books.google.fr/books?id=1hVSQBNvr74C
  • SACADURA. Transferts thermiques [online]. nedatováno. Dostupné z: https://www.lavoisier.fr/livre/environnement/transferts-thermiques-2e-ed/sacadura/descriptif-9782743019938

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