This paper is published in Volume-5, Issue-2, 2019
Area
Mechanical
Author
Jitendra Patil, Saurabh Murkute, Ketul Chauhan, Abhishek Dahake, Yogendra Borje, Shinu Philipose, Anmol Arora, Md. Hasan Akhtar
Org/Univ
S. B. Jain Institute of Technology, Management and Research, Nagpur, Maharashtra, India
Pub. Date
27 March, 2019
Paper ID
V5I2-1498
Publisher
Keywords
Vortex Tube, Design of vortex tube, Thermoelectric module

Citationsacebook

IEEE
Jitendra Patil, Saurabh Murkute, Ketul Chauhan, Abhishek Dahake, Yogendra Borje, Shinu Philipose, Anmol Arora, Md. Hasan Akhtar. Performance analysis of Vortex tube refrigeration system, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Jitendra Patil, Saurabh Murkute, Ketul Chauhan, Abhishek Dahake, Yogendra Borje, Shinu Philipose, Anmol Arora, Md. Hasan Akhtar (2019). Performance analysis of Vortex tube refrigeration system. International Journal of Advance Research, Ideas and Innovations in Technology, 5(2) www.IJARIIT.com.

MLA
Jitendra Patil, Saurabh Murkute, Ketul Chauhan, Abhishek Dahake, Yogendra Borje, Shinu Philipose, Anmol Arora, Md. Hasan Akhtar. "Performance analysis of Vortex tube refrigeration system." International Journal of Advance Research, Ideas and Innovations in Technology 5.2 (2019). www.IJARIIT.com.

Abstract

This paper represents the experimentation of the Vortex Tube Refrigeration system. Vortex tube also known as Ranque-Hilsch Vortex tube. A Vortex Tube is a Mechanical Device, which generates cold and hot streams from a single injection of pressurized gas. Without any moving parts or chemical reaction within the tube, the intersecting phenomenon of energy separation results only from fluid dynamic effects. The Control valve is a screw located at the hot end and cold end with thread on it which is used to restrict the flow of air due to which the small forced vortex takes place after stagnation point and free vortex get away through the hot end as hot air and cold end as cold air. At the other end small orifice plate is located to further reduce the temperature Drop. The 2.5 HP compressor is used for experimentation for low pressures. Also, for higher pressures it is difficult with a low capacity compressor to get the accurate results. For this purpose, a model has been developed using experimental data to predict the results for the pressure range of 1to 6 bar. We have attached Thermo-electric module to system to generate electricity without affecting the efficiency of the system.