This paper analyzes the impact of major design and operational parameters on the efficiency and performance of the pumping section of a reciprocating pump compressor with a gas damper and reports the key calculation results obtained in analyzing the influence of shaft rotation speed, degree of pressure rise in the pump, and relative gas damper volume on the energy and performance characteristics of a reciprocating pump compressor having a gas damper.
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V. E. Shcherba, A. K. Kuzhbanov, and G. A. Nesterenko, “Calculation of compression and expansion processes of a displacement pump compressor with gas damping,” Omsk. Nauch. Vestn., Izd. OmGTU, Omsk (2012), No. 23 (110), pp. 148–152.
V. E. Shcherba, E. A. Pavlyuchenko, and A. K. Kuzhbanov, “Mathematical modeling of compression and expansion processes in a reciprocating pump with a gas damper,” Vestn. Samarsk. Gos. Aerokosm. Univ. (2012), No. 3–2, pp. 133–138.
V. E. Shcherba, E. A. Pavlyuchenko, and A. K. Kuzhbanov, “Mathematical modeling of processes of suction and discharge in a displacement pump compressor with gas damper,” Khim. Neftegaz. Mashinostr., No. 7, 26–30 (2013).
V. E. Shcherba, A. K. Kuzhbanov, E. A. Pavlyuchenko, et al., “Mathematical model of working processes of reciprocating pump compressor with gas damper,” Omsk. Nauch. Vestn., Izd. OmGTU, Omsk (2013), No. 1 (117), pp. 82–87.
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Translated from Khimicheskoe i Neftegazovoe Mashinostroenie, No. 1, pp. 23–26, January, 2014.
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Shcherba, V.E., Pavlyuchenko, E.A. & Kuzhbanov, A.K. Parametric Analysis of Operation of Pumping Section of Reciprocating Pump Compressor with Gas Damper. Chem Petrol Eng 50, 33–37 (2014). https://doi.org/10.1007/s10556-014-9850-9
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DOI: https://doi.org/10.1007/s10556-014-9850-9