Effect of Reynolds asymmetry and use of porous media in the counterflow double-pipe heat exchanger for passive heat transfer enhancement
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Springer Science and Business Media LLC
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http://link.springer.com/content/pdf/10.1007/s10973-019-08991-2.pdf
Reference80 articles.
1. Mahian O, Kianifar A, Heris SZ, Wen D, Sahin AZ, Wongwises S. Nanofluids effects on the evaporation rate in a solar still equipped with a heat exchanger. Nano Energy. 2017;36:134–55.
2. Raei B, Shahraki F, Jamialahmadi M, Peyghambarzadeh SM. Experimental study on the heat transfer and flow properties of γ-Al2O3/water nanofluid in a double-tube heat exchanger. J Therm Anal Calorim. 2017;127:2561–75.
3. Sahiti N, Krasniqi F, Fejzullahu Xh, Bunjaku J, Muriqi A. Entropy generation minimization of a double-pipe pin fin heat exchanger. Appl Therm Eng. 2008;28:2337–44.
4. Patel VK, Rao RV. Design optimization of shell-and-tube heat exchanger using particle swarm optimization technique. Appl Therm Eng. 2010;30:1417–25.
5. Guo J, Cheng L, Xu M. Optimization design of shell-and-tube heat exchanger by entropy generation minimization and genetic algorithm. Appl Therm Eng. 2009;29:2954–60.
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