Title of article :
Optimization of low pressure vortex tube via different axial angles of injection nozzles
Author/Authors :
pourmahmoud, n. urmia university, اروميه, ايران , jahangiramini, a. urmia university, اروميه, ايران , izadi, a. urmia university, اروميه, ايران
From page :
1255
To page :
1266
Abstract :
In this article, a Ranque-Hilsch Vortex Tube has been optimized utilizing axial angles for nozzles. Effect of nozzles angles on the flow behavior has been investigated by computational fluid dynamics (CFD) techniques. A finite volume approach with the standard k-ε turbulence model has been used to carry out all the computations. The dimensions of the studied vortex tubes have been kept the same for all models and the performance of machine was studied under 5 different angles (β), namely 0, 2, 4, 6 and 8 degree adjusted to the nozzles. Achieving a minimum cold exit temperature is the maingoal of this numerical research. The results show that utilizing this kind of nozzle improves the cooling capacity of device for most values of inlet mass flow rates. Finally, some results of the CFD models have been validated by the available experimental datawhich show reasonable agreement, and other ones are compared qualitatively.
Keywords :
Axial angle , Energy separation , Numerical simulation , Total pressure , Vortex tube
Journal title :
International Journal of Engineering
Journal title :
International Journal of Engineering
Record number :
2563990
Link To Document :
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