Development of CFD-based procedure for 3d gear pump analysis

Tumbling Multi-Chamber (TMC) gear pump is a generally unknown type of hydraulic device, which features a unique three-dimensional shape of the gears. The main benefits of such design over the conventional gear pumps are self-adapting tightness of the pump parts, the possibility to mold the parts fro...

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Veröffentlicht in:Engineering applications of computational fluid mechanics 2020-01, Vol.14 (1), p.1023-1034
Hauptverfasser: Munih, Jernej, Hočevar, Marko, Petrič, Klemen, Dular, Matevž
Format: Artikel
Sprache:eng
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Zusammenfassung:Tumbling Multi-Chamber (TMC) gear pump is a generally unknown type of hydraulic device, which features a unique three-dimensional shape of the gears. The main benefits of such design over the conventional gear pumps are self-adapting tightness of the pump parts, the possibility to mold the parts from a polymer material and high volumetric efficiency, considering the simplicity of the design. The specific working principle of TMC pumps requires a slightly different approach to the numeric modeling and analysis process compared to the conventional gear pump types (e.g. external gear and gerotor pumps). One of the main contributions of the work is the development of an analysis procedure, which allows studying flow and pressure conditions in the TMC pump. This includes the influence of the positioning of the pump parts on spatial and temporal variations in sealing regions and the influence of pressure field propagation in relation to the valve plate position.
ISSN:1994-2060
1997-003X
DOI:10.1080/19942060.2020.1789506