Experimental investigation of the subcooled flow boiling heat transfer of water and nanofluids in a horizontal metal foam tube
Author:
Publisher
Springer Science and Business Media LLC
Subject
Fluid Flow and Transfer Processes,Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1007/s00231-021-03042-9.pdf
Reference35 articles.
1. Wang G, Cheng P (2009) Subcooled flow boiling and microbubble emission boiling phenomena in a partially heated microchannel. Int J Heat Mass Transf 52:79–91
2. Lee J, Mudawar I (2009) Critical heat flux for subcooled flow boiling in micro-channel heat sinks. Int J Heat Mass Transf 52:3341–3352
3. Fang X, Yuan Y, Xu A, Tian L, Wu Q (2017) Review of correlations for subcooled flow boiling heat transfer and assessment of their applicability to water. Fusion Eng Des 100:52–63
4. Azizifar S, Ameri M, Behroyan I (2020) An experimental study of subcooled flow boiling of water in the horizontal and vertical direction of a metal-foam tube, Therm Sci Engin Prog 100748
5. Hua S, Huang R, Li Z, Zhou P (2015) Experimental study on the heat transfer characteristics of subcooled flow boiling with cast iron heating surface. Appl Therm Eng 77:180–191
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