2019Russian Engineering ResearchRequires access

Modeling the Operation of Bulk-Action Hybrid Piston Power Systems

A. M. Bazhenov, V. Е. Shcherba, V. V. Shalai, А. В. Григорьев, A. Yu. Kondyurin

Open publisher page 7 citations

Abstract

Abstract The operation of a bulk-action hybrid piston power unit is described by a mathematical model based on the laws of energy, mass, and momentum conservation and the equation of state. The influence of the pressure in the pump and compressor sections, the gap in the compressor section, and the eccentricity on the relation between the opposing liquid flow rates through the piston seal and on the thickness of the liquid layer above the piston is analyzed.

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What this paper is about

Abstract The operation of a bulk-action hybrid piston power unit is described by a mathematical model based on the laws of energy, mass, and momentum conservation and the equation of state. The influence of the pressure in the pump and compressor sections, the gap in the compressor section, and the eccentricity on the relation between the opposing liquid flow rates through the piston seal and on the thickness of the liquid layer above the piston is analyzed.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Abstract The operation of a bulk-action hybrid piston power unit is described by a mathematical model based on the laws of energy, mass, and momentum conservation and the equation of state. The influence of the pressure in the pump and compressor sections, the gap in the compressor section, and the eccentricity on the relation between the opposing liquid flow rates through the piston seal and on the thickness of the liquid layer above the piston is analyzed.

Key concepts: Piston (optics), Gas compressor, Mechanics, Radial piston pump, Mechanical engineering, Piston pump, Power (physics), Eccentricity (behavior)

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