TIAN XINGWANG, XU ZHENTAO, ZHANG KUN, et al. Research Progress in Composite-enhanced Flow Boiling Heat Transfer for Refrigerants. [J]. Journal of refrigeration, 2024, 45(5): 17-30.
TIAN XINGWANG, XU ZHENTAO, ZHANG KUN, et al. Research Progress in Composite-enhanced Flow Boiling Heat Transfer for Refrigerants. [J]. Journal of refrigeration, 2024, 45(5): 17-30. DOI: 10.12465/j.issn.0253-4339.2024.05.017.
Improvements in heat transfer performance and efficiency through a single heat transfer enhancement technology are limited. Hence
composite-enhanced heat transfer technologies must be developed to improve resource utilization rates and reduce energy consumption and carbon emissions. Refrigerants exhibit physical properties that significantly affect the energy transport in refrigeration systems. Based on the development trend of refrigeration systems characterized by miniaturization
reduced weight
energy savings
and efficient heat transfer
refrigerant composite-enhanced heat transfer can effectively improve the energy efficiency of refrigeration systems
which has been widely studied in recent years. This work summarizes the latest research progress in composite-enhanced flow boiling heat transfer for refrigerants
focusing on nanoparticles
metal foam
external field (ultrasonic/magnetic field/electric field)
and environmentally friendly refrigerant mixtures. It also highlights the prospects and existing problems in the application of multi-field synergy and nanoparticle-metal-foam-refrigerant composite-enhanced heat transfer as a future research direction. The review provides insights and references for establishing a new multi-element refrigerant composite-enhanced system.
关键词
制冷剂复合强化纳米颗粒泡沫金属外场作用
Keywords
refrigerantcomposite-enhancednanoparticlesmetal foamexternal field