CONSTRUCTION OF A HIGH-SPEED RECIPROCATING COMPRESSOR INSTALLATION BASED ON 4GM10A FOR COMPRESSING THE ASSOCIATED PETROLEUM GAS

Authors

  • А. В. Смирнов « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004, Ukraine
  • В. Н. Фесенко « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004, Ukraine
  • В. В. Найчук « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004, Ukraine
  • Ф. В. Оболоник « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004, Ukraine
  • М. А. Туренко « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004, Ukraine

DOI:

https://doi.org/10.18198/j.ind.gases.2014.0724

Keywords:

Компрессорная установка, Поршневой компрессор, Попутный нефтяной газ, Блочнокомплектное исполнение, Трёхмерное проектирование, Параметрическое моделирование

Abstract

The construction of reciprocating compressors with a higher shaft rotational speed enabled us to reduce significantly their outer dimensions and weight as well as their cost. In addition, a high-speed compressor can be made on a frame in the block design. This reduces the cost of assembling and construction work, and allows to put faster the compressor into operation. On the development of the reciprocating compressor with a higher rotary speed which is a part of the compressor installation 4GM10A-32/1,4-28,5 intended for compression and feeding of the associated petroleum gas into the gas pipeline has been reported. In the compressor a limited lubrication of cylinders and rod packings is applied. The development of the compressor was carried out using the method of parametric modeling which significantly reduced the time spent for issuing the design documentation.

Author Biographies

А. В. Смирнов, « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004

A.V.  Smirnov, Candidate of Technical Sciences

В. Н. Фесенко, « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004

V.N. Fesenko

В. В. Найчук, « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004

V.V. Naychuk

Ф. В. Оболоник, « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004

V.F. Obolonik

М. А. Туренко, « Sumskoe Machine Building Scientific Production Association named by M.V. Frunze», Str. Gorkogo, 58, Sumyi, Ukrainе, 40004

M.A. Turenko

References

Artner D., Yurin A., Toyama K. (2013). Develop and implement effective methods to control the performance of reciprocating compressors// Kompressornaya Tekhnika i Pnevmatika. [Сompressor Equipment and Pneumatics]. — № 6. — P. 2-7. (Rus.).

Grin N.P., Nataluha Yu.B., Smirnov A.V. (2010). Development piston compressor block design 4VM10-55/71M1 for air separation plants medium pressure// Tekhnicheskie Gazy. [Industrial Gases]. — № 6. — P. 31-35. (Rus.).

Smirnov A.V., Fesenko V.N., Shapovalov A.V. et al. (2012). Piston compressor units with various types of the main drives for compression hydrocarbonic gases // Tekhnicheskie Gazy. [Industrial Gases]. — № 3. — P. 42-48. (Rus.).

Issue

Section

PRACTICE. NEW PROJECTS