Open Access
Issue
E3S Web Conf.
Volume 184, 2020
2nd International Conference on Design and Manufacturing Aspects for Sustainable Energy (ICMED 2020)
Article Number 01056
Number of page(s) 6
DOI https://doi.org/10.1051/e3sconf/202018401056
Published online 19 August 2020
  1. H. Akachi, Structure of heat pipe, US Patent, 4921041 (1990) [Google Scholar]
  2. M. Jalilian, H. Kargarsharifabad, A. Abbasi Godarzi, A. Ghofrani, and M.B. Shafii, Simulation and optimization of pulsating heat pipe flat-plate solar collectors using neural networks and genetic algorithm: a semi-experimental investigation, Clean Technology Environment Policy, 18, 2251-2264 (2016) [Google Scholar]
  3. Z. Said, M.H. Sajid, M.A. Alim, R. Saidur, and N.A. Rahim, Experimental investigation of the thermophysical properties of Al2O3 - nano fluid and its effect on a flat plate solar collector, International Communications in Heat and Mass Transfer, 48 , 99-107 (2013) [Google Scholar]
  4. P. Stule, F. Polasek, Cooling of electronic elements by miniature and medium-sized heat pipe, Proceedings of the European Thermal Science Conference (1996) [Google Scholar]
  5. S. Harmand, R. Sonan, M. Fakes, and H. Hassan, Transient cooling of electronic components by flat heat pipes, Applied Thermal Engineering, 31, 1877-1885 (2011) [Google Scholar]
  6. D. Torresin, F. Agostini, A. Mularczyk, B. Agostini, and M. Habert, Double condenser pulsating heat pipe cooler, Applied Thermal Engineering, 126, 1051-1057, (2017) [Google Scholar]
  7. G. Burban, V. Ayel, A. Alexandre, P. Lagonotte, Y. Bertin, and C. Romestant, Experimental investigation of a pulsating heat pipe for hybrid vehicle applications, Applied Thermal Engineering, 50, 94-103 (2013) [Google Scholar]
  8. M.L. Rahman, R.A. Sultan, T. Islam, N.M. Hasan, and M. Ali, An experimental investigation on the effect of fin in the performance of closed loop pulsating heat pipe (CLPHP), Procedia Engineering, 105, 137-144 (2015) [Google Scholar]
  9. V. Manno, S. Filippeschi, M. Mameli, C. Romestant, V. Ayel, and Y. Bertin, Thermal-Hydraulic Characterization of a Flat Plate Pulsating Heat Pipe for Automotive Applications, Interfacial Phenomena and Heat Transfer, 3, 413-425 (2015) [Google Scholar]
  10. F.M. Shang, D.Y. Liu,H. Xian, J.H. Liu,. Experimental investigation on enhanced heat transfer of self-exciting mode oscillating-flow heat pipes, J Eng Ther- mophys, 30(3), 461-464 (2009) [Google Scholar]
  11. M. Balkrishna, K. Sameer, Taylor bubble-train flows and heat transfer in the context of Pulsating Heat Pipes, International Journal of Heat and Mass Transfer, 79, 279-290 (2014) [Google Scholar]
  12. Y. Zhang, A. Faghri, Advances and Unsolved Issues in Pulsating Heat Pipes, Heat Transfer Engineering, 28, 20-44 (2008) [Google Scholar]
  13. S. Khandekar, P.K. Panigrahi, F. Lefevre, J.Bonjour Local hydrodynamics of flow in a pulsating heat pipe: a review, Front Heat Pipes, 1(1), 1-20 (2010) [Google Scholar]
  14. L. Xiao, Y. Cao Recent advances in pulsating heat pipes and its derivatives, J Enhanced Heat Transfer 19(3), 213-31 (2012) [Google Scholar]
  15. X. Han, X. Wang, H. Zheng, X. Xu, and G. Chen, Review of the development of pulsating heat pipe for heat dissipation, Renewable and Sustainable Energy Reviews, 59, 692-709 (2016) [Google Scholar]
  16. D. Bastakoti, H. Zhang, D. Li, W. Cai, F. Li, An Overview on the Developing Trend of Pulsating Heat Pipe and its Performance, Applied Thermal Engineering, 141, 305-332 (2018) [Google Scholar]
  17. M. Groll, S. Khandekar, Pulsating Heat Pipes: Progress and Prospects, Proc. International Conference on Energy and the Environment, Shanghai, China, 1, 723-730 (2003) [Google Scholar]
  18. M. Ebrahimi, M.B. Shafii, M.A. Bijarchi, Experimental investigation of the thermal management of flat-plate closed-loop pulsating heat pipes with interconnecting channels, Applied Thermal Engineering, 90, 838-847 (2015) [Google Scholar]
  19. D. Xu, T. Chen, Y. Xuan, Thermo-hydrodynamics analysis of vapor-liquid two-phase flow in the flat-plate pulsating heat pipe, International Communications in Heat and Mass Transfer, 39, 504-208 (2012) [Google Scholar]
  20. M. Kamlesh, M. Nirvesh, Vivek Patel, Influence of the channel profile on the thermal resistance of closed loop flat plate oscillating heat pipe, Journal of the Brazilian Society of Mechanical Sciences and Engineering, 42, 1-12 (2020) [Google Scholar]
  21. M.L. Rahman, S. Nawrin, R.A. Sultan, F. Mir, M. Ali, Effect of fin and insert on the performance characteristics of close loop pulsating heat pipe (CLPHP), Procedia Engineering, 105, 129-136 (2015) [Google Scholar]
  22. H.Y. Noh, S.J. Kim, Experimental Investigation of Fluid Motion in Pulsating Heat Pipe, ASME Proceedings, Thermal Management,1 (2015) [Google Scholar]
  23. M. Mameli, L. Araneo, S. Filippeschi, L. Marelli, R. Testa, and M. Marengo, Thermal response of a closed loop pulsating heat pipe under a varying gravity force, International Journal of Thermal Sciences, 80, 11-22 (2014) [Google Scholar]
  24. K. Sameer, Thermo-Hydrodynamics of closed loop pulsating heat pipes, Ph.D Thesis, (2004) [Google Scholar]
  25. Srinivasa Rao D, Sandhya Rani MN, Sarfaraz Nawa z Syed and Suresh Kumar Tummala, E3S Web of Conferences 87 01003 (2019) [CrossRef] [EDP Sciences] [Google Scholar]
  26. D. Torresin, M. Habert, V. Mounier, F. Agostini, and B. Agostini, Characterisation of a novel pulsating heat pipe cooler for power electronics at extreme ambient temperatures, 13th International Conference on Nanochannels, Microchannels, and Minichannels, ICNMM (2015), collocated with the ASME 2015 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems (2015) [Google Scholar]
  27. G. Spinato, N. Borhani, and J.R. Thome, Operational regimes in a closed loop pulsating heat pipe, International Journal of Thermal Sciences, 102 78-88, (2016) [Google Scholar]
  28. D. Mangini, M. Mameli, D. Fioriti, S. Filippeschi, L. Araneo, M. Marengo, Hybrid Pulsating Heat Pipe for space applications with non-uniform heating patterns: Ground and microgravity experiments, Applied Thermal Engineering 126, 1029-1043, (2017) [Google Scholar]
  29. S. Khandekar, Pulsating heat pipe based heat exchangers, Proc. 21st International Symposium on Transport Phenomena, Kaohsiung City, Taiwan, (2010) [Google Scholar]

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