Design, Fabrication and Testing of Safety Valve Vent Silencer with Cyclone Separator for Industrial Applications

Year : 2021 | Volume : | Issue : 1 | Page : 22-27
By

    B. Arthy

  1. V. Mohan Sivakumar

  2. T. Kumaresan

  1. Lecturer, Department of Mechanical Engineering, PSG Polytechnic College, Tamil Nadu, India
  2. Head of the Department, Department of Mechanical Engineering, PSG Polytechnic College, Coimbatore, Tamil Nadu, India

Abstract

The aim of this research work is to safeguard the infill materials, which is used inside the safety valve vent silencer. This research will help the infill materials from the wet steam and increases the life of the infill materials. The main parts of the research project are the cyclone chamber, center pipe. This cyclone separator drains the condensate through the lower part of the silencer and the steam releases vertically top side direction. The working Principle of this Cyclone separator is completely founded on “Centrifugal Force” procedure. Because of the centrifugal force the dry steam releases vertically upwards and the dry steam which is smidgen weighted than dry Steam so consequently it is released through channel pipe.

Keywords: Cyclone separator, safety valve, pressure, silencer, noise

[This article belongs to Journal of Industrial Safety Engineering(joise)]

How to cite this article: B. Arthy, V. Mohan Sivakumar, T. Kumaresan Design, Fabrication and Testing of Safety Valve Vent Silencer with Cyclone Separator for Industrial Applications joise 2021; 8:22-27
How to cite this URL: B. Arthy, V. Mohan Sivakumar, T. Kumaresan Design, Fabrication and Testing of Safety Valve Vent Silencer with Cyclone Separator for Industrial Applications joise 2021 {cited 2021 Apr 20};8:22-27. Available from: https://journals.stmjournals.com/joise/article=2021/view=90445/

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References

1. Sathyanathan VT. Safety valves in boiler system; 2009. Available from: https://www.brighthubengineering.com/power-plants/34380-the-use-and-design-of-safety-valves- in-boiler-systems/.
2. US Duct. (2021). Industrial Cyclone Manufacturer. [online] Available at: https://www.us- duct.com/industrial-cyclone-manufacturer
3. Wikipedia Contributors (2021). Cyclonic separation. [online] Wikipedia. Available at: https://en.wikipedia.org/wiki/Cyclonic_separation
4. Zhikharev AS, Kutepov AM, Solov’ev VV. Design of a cyclone separator for the separation of gas–liquid mixtures. Chem. Pet. Eng. (Engl. Transl.) ;(United States). 1985;21(4):196-8.
5. Rosa ES, França FA, Ribeiro GS. The cyclone gas–liquid separator: operation and mechanistic modeling. J Petrol Sci Eng. 2001;32(2-4):87-101. doi: 10.1016/S0920-4105(01)00152-8.
6. Mikheev N, Saushin I, Paereliy A, Kratirov D, Levin K. Cyclone separator for gas–liquid mixture with high flux density. Powder Technol. 2018;339:326-33. doi: 10.1016/j.powtec.2018.08.040.
7. Yang Y, Wang S, Wen C. Gas–liquid two-phase flows in double inlet cyclones for natural gas separation. Cogent Eng. 2017;4(1):1373421. doi: 10.1080/23311916.2017.1373421.
8. Zeng X, Fan G, Xu J, Liu A, Xu Y, Yan C. Experimental study on a new gas–liquid separator for a wide range of gas volume fraction. Chem Eng Res Des. 2020;160:561-70. doi: 10.1016/j.cherd.2020.06.004.
9. Taiwo MI, Namadi MA, Mokwa B. Design and analysis of cyclone dust separator. Am J Eng Res. 2016;5(4):130-4.
10. Park D, Go JS. Design of cyclone separator critical diameter model based on machine learning and cfd. Processes. 2020;8(11):1521. doi: 10.3390/pr8111521.
11. Bashir K. Design and fabrication of cyclone separator. CUPB; 2015.
12. Dere BRR, Sree AD, Babu GM, Rao SR. Design and analysis of Cyclone Separator. Int J Eng Res Technol (IJERT). 2014;3:2278-0181.


Regular Issue Open Access Article
Volume 8
Issue 1
Received March 11, 2021
Accepted March 25, 2021
Published April 20, 2021

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