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IIR document
Prediction model of the average size of aggregate in nano-refrigerant.
Rheological behavior of Al2O3/R141b nanorefrigerant.
A review of nanorefrigerants: flow characteristics and applications.
Experimental research on particle aggregation behavior in nanorefrigerant-oil mixture.
The characterization and thermo-physical property investigations of SiO2/HFE7000 nanorefrigerants.
Study on thermomagnetic convection characteristics of a cooling device using magnetic nano-refrigerant.
[In Chinese. / En chinois.]
Nanorefrigerants: a comprehensive review on its past, present and future.
Recommended by the IIR / IIR document
A critical review on nanorefrigerants: Boiling, condensation and tribological properties.
Experimental study on the heat transfer and flow characteristics of nanorefrigerants inside a corrugated tube.
An overview of experimental studies on nanorefrigerants: Recent research, development and applications.
Experimental study of the characteristics of domestic refrigerator using nanofluid R600A/TiO2
[In Ukrainian. / En ukrainien.]
Dispersion stability of multi-walled carbon nanotubes in refrigerant with addition of surfactant.
Flow boiling heat transfer characteristics of nano-refrigerants in a horizontal tube.
Experimental investigation on TiO2 nanoparticle migration from refrigerant–oil mixture to lubricating oil during refrigerant dryout.
A review of stability, thermophysical properties and impact of using nanofluids on the performance of refrigeration systems.
Refrigeration sector monitoring
1 result
A promising future for nanorefrigerants
A review article published in the IJR highlights the remarkable heat transfer properties of nanorefrigerants, which are leading to significant improvements in the performance of refrigeration systems.
Encyclopedia of refrigeration
Nanorefrigerants
Nanorefrigerants are created by adding nanoparticles in suspension to a base refrigerant. They have a thermal conductivity that is 15% to 104% higher than that of the corresponding...