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IIR document
Analysis of frost thickness and roughness growth from the perspective of frost crystal structure.
Lithium bromide contact angle study on different roughness stainless steel surfaces.
Wall roughness influence on the efficiency characteristics of centrifugal pump.
Rough surfaces with enhanced heat transfer for electronics cooling by direct metal laser sintering.
Experimental determination of the role of roughness and wettability on pool-boiling heat transfer of refrigerant.
Effect of surface roughness on the mass flow rate predictions for adiabatic capillary tubes.
Effect of surface roughness on heat transfer in a thermal energy storage system employing microencapsulated phase change material slurry.
Influence of the wall surface roughness on the supercooling degree of water flowing inside a heat exchanger.
Compressor friction losses due to oil viscosity and asperity contact surfaces: a numerical study on crankshaft bearings lengths, clearances and roughness parameters.
Impact of neglecting the variations in the relative surface roughnesses of capillary tubes on the accuracy of a capillary tube model.
Numerical study on optimization of ejector primary nozzle geometries.
Influence investigation of friction on supersonic ejector performance.
CFD simulation of liquid desiccant dehumidifier performance with smooth and rough plates.
Nanoparticle deposition by boiling on aluminum surfaces to enhance wettability.
An investigation on the bearing design and friction characteristics of a hermetic reciprocating compressor.
Refrigeration sector monitoring
3 results
PCM2016 highlights: The supercooled water method: a promising technique for ice slurry generation
The following summary refers to a paper presented during the 11th Phase-Change Materials and Slurries for Refrigeration and Air Conditioning (PCM2016) IIR conference which took place on May 18-20 in Karlsruhe, Germany. This paper can be downloaded...
Evaporative cooling: continuation of the Cold-Snap project at Harvard University
Tests show that Cold-Snap evaporative cooling technology would be effective in humid climates, while limiting water consumption.
Evaporative cooling without adding humidity
Scientists at the University of Harvard have designed a prototype evaporative cooling system called Cold-SNAP that effectively cools air at low cost for both dry and humid climates.
Encyclopedia of Refrigeration
1 result
Additive manufacturing of regenerators for caloric cooling
In many areas of engineering, additive manufacturing allows the production of complex and multifunctional products that could not be manufactured using traditional methods. In the...