Study of the effect of the diameter of the case of the safety valve on his hydraulic resistance coefficient

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Abstract

The article discusses the dependence of the parameters of the safety valve on the geometry of the flow part. Direct-action single-stage safety valve is selected for the study. The influence of its case diameter on the hydraulic resistance coefficient was researched. A computational experiment was conducted using the Ansys Fluent software package. As a result, it is found that when the ratio of the plate diameter to the saddle diameter is 1.3 then a decrease of the body diameter to a value less than two diameters of the saddle is resulting in a significant increase of the coefficient of hydraulic resistance

About the authors

Aleksandr Igolkin

Samara University

Author for correspondence.
Email: igolkin97@gmail.com

Doctor of Technical Sciences, Associate Professor, 
Professor of the Department of ASEU

Russian Federation

Sergey Isaev

Samara University

Email: m555444m@gmail.com

postgraduate student, Department of Automatic Systems of Power Plants

Russian Federation

References

  1. Kondratieva, T.F. (1976), Safety valves [Predokhranitel'nye klapany], Mashinostroenie, Leningrad, Russian Federation, 230 p. (in Russian).
  2. Bugayenko, V.F. (1979), Pneumatic automation of rocket and space systems [Pnevmoavtomatika raketno-kosmicheskih sistem] / in Budnik, V.S. (ed.), Mashinostroenie, Moscow, Russian Federation, 168 p. (in Russian).
  3. Makaryants, G. M., Sverbilov, V. Ya., Makaryants, M. V. and Batrakova, O. V. (2010), “Calculation of the lifting force of a gas flow ina flat safety valve using numerical methods” [Raschet podemnoj sily gazovogo potoka v ploskom predohranitel’nom klapane s ispol’zovaniem chislennyh metodov], Izvestiya Samara Scientific Center, Russian Academy of Sciences [Izvestiya Samarskogo nauchnogo centra Rossiyskoy akademii nauk], vol. 12, no. 4, pp. 247–251 (in Russian).
  4. Idelchik, I.Ye. (1992), Handbook of hydraulic resistances [Spravochnik po gidravlicheskim soprotivleniyam], Mashinostroenie, Moscow, Russian Federation, 672 p. (in Russian).

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Copyright (c) 2019 Александр Алексеевич Иголкин, Сергей Юрьевич Исаев

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