The problem of creating and developing an integrated approach to standardization process of automated testing of turboexpanders

Author:

Mamedov V. M.1ORCID,Arkharov I. A.1ORCID

Affiliation:

1. N.E. Bauman Moscow State Technical University

Abstract

Objective. The purpose of the study is to discuss the issue of creating and developing an integrated methodological approach to testing and standardizing the process of testing turboexpanders based on automation equipment, taking into account the existing and potential demand for domestic turbine units by 2035 under the conditions of sanction pressure.Method. Identification of the problem and formation of an approach to its solution based on the existing domestic experience in testing turboexpanders, taking into account the introduction of automation tools and analysis of potential consumers of properly marked and structured data on the characteristics of the machine. Development and implementation of automatic regulation and control systems for low-temperature machines.Result. In accordance with the general classification of product testing, 9 types of research have been identified that are of scientific and practical interest in the experimental determination of the most relevant parameters of turboexpanders: isentropic efficiency, stability of the rotor and impellers, strength of impellers, vibration and noise characteristics.Conclusion. Based on the list of tests and the main characteristics of the machines, the place of application of experimental data was determined and requirements for means of conducting automated tests were formed in order to optimize cryogenic systems as a whole.

Publisher

FSB Educational Establishment of Higher Education Daghestan State Technical University

Reference20 articles.

1. Hetagurov, V.A. Experience and prospects for the use of turboexpander units at field technological facilities of the Russian gas industry. V.A. Hetagurov, P.P. Slugin, M.A. Voroncov et al. Gas industry. 2018; 11(777):14-22. (In Russ)

2. Yacenko, I.A. Realizing the energy saving potential and increasing the energy efficiency of PJSC Gazprom based on the use of turboexpander technologies. I.A. Yacenko, G.A. Hvorov, M.V. Yumashev et al. Gas industry. 2017; S1 (750):60-63. (In Russ)

3. Mamedov, V.M. Features of energy and dynamic tests of large-capacity turboexpanders. V.M. Mamedov, I.A. Arkharov. Collection of the All-Russian student conference “Student Scientific Spring”, dedicated to the 170th anniversary of V.G. Shukhova, 2023; 743-745. (In Russ)

4. GOST R 53637-2009. Automotive turbochargers. General technical requirements and test methods. – Enter. 2010–01–06. – M.: Standartinform, 2010;12. (In Russ)

5. GOST R 51743-2001. Refrigerating machines. Machines for liquid cooling based on turbocompressors. Test methods. – Enter. 2002–01–01. – M.: Standards Publishing House, 2001; 21. (In Russ)

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