Heat and Mass Transfer-Enhancement Technique Used for Vapour Absorption Refrigeration System
Author:
Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-15-6360-7_33
Reference18 articles.
1. Amaris C, Bourouis M, Vallès M (2014) Effect of advanced surfaces on the ammonia absorption process with NH3/LiNO3 in a tubular bubble absorber. Int J Heat Mass Transfer 72:544–552
2. Cerezo J, Bourouis M, Vallès M, Coronas A, Best R (2009) Experimental study of an ammonia-water bubble absorber using a plate heat exchanger for absorption refrigeration machines. Appl Therm Eng 29:1005–1011
3. Cerezo J, Best R, Chan L, Romero R, Hernandez J, Lara F (2018) A theoretical-experimentalcomparison of an improved ammonia-water bubble absorber by means of ahelical static mixer. Energies 11:56
4. Chen Y, Cao R, Wu J, Yi Z, Ji G (2016) Alternate heat and mass transfer absorption performances on staggered tube bundle with M-W corrugated mesh guider inserts. Int J Refrig 66:10–20
5. Ding Y, Chen H, He Y, Lapkin A, Yeganeh M, Siller L et al (2007) Forced convective heat transfer of nanofluids. Adv Powder Technol 18(6):813–824
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