Fr. 87.00

Computational Fluid Dynamics Study of the Ranque-Hilsch Vortex Tube - The Complete CFD Study of the Secrets of the Vortex Tube and The 3D Modeling For Future Investigations and Enhancements

English · Paperback / Softback

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Description

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The vortex tube is a simple device with no mechanical operation and no moving parts which by injecting compressed air at room temperature circumferentially into the tube at high velocity this simple device separates the inlet compressed air into outward radial high temperature vortex and inner low temperature one. Temperature separation occurs along the tube from the inner vortex to the outer vortex Vortex tubes are used in applications as cooling cutting tools (lathes and mills) during operation &, electronic component cooling. It has advantages as it is maintenance free, reliable and compact A CFD study and analysis of the RHVT is presented in this book. The performance of the RHVT in this study is investigated at different cold orifice diameter to tube diameter ratios A 3D analysis of the air flow inside the RHVT is carried out to have a better visualization of the air inside the tube and to investigate some of its properties as the inner and outer vortex and the stagnation point. The 3D study showed that two vortices exist inside the tube, that both vortices have the same direction of rotation. The stagnation point existence is investigated in this study.

About the author










M.Sc. Eng. Seif T. Abdelghany graduated from Mechatronics Engineering GUC in 2012 and pursued his Masters in CFD in 2014. Eng.Seif pursued his research in CFD analysis of the Ranque-Hilsch Vortex Tube. Co-Author Assoc. Prof Dr. Eng Hamdy A. Kandil works at Mechanical Engineering Department, Alexandria University.

Product details

Authors Seif Abdelghany, Seif T Abdelghany, Seif T. Abdelghany, Hamdy A Kandil, Hamdy A. Kandil
Publisher Scholar's Press
 
Languages English
Product format Paperback / Softback
Released 01.01.2015
 
EAN 9783639862225
ISBN 978-3-639-86222-5
No. of pages 144
Dimensions 150 mm x 220 mm x 7 mm
Weight 208 g
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Thermodynamics

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