On shape design and optimization of gerotor pumps

Author:

Pareja‐Corcho J. C.12ORCID,Bartoň M.34ORCID,Pedrera‐Busselo A.5ORCID,Mejia‐Parra D.1ORCID,Moreno A.1ORCID,Posada J.1ORCID

Affiliation:

1. Vicomtech Foundation, Basque Research and Technology Alliance (BRTA) Mikeletegi 57 20009 Donostia‐San Sebastian Spain

2. Faculty of Informatics University of the Basque Country (UPV/EHU) Manuel Lardizabal 1 20018 Donostia‐San Sebastian Spain

3. BCAM – Basque Center for Applied Mathematics Alameda de Mazarredo 14 48009 Bilbao Basque Country Spain

4. Ikerbasque – Basque Foundation for Sciences Maria Diaz de Haro 3 48013 Bilbao Basque Country Spain

5. Egile Innovative Solutions Kurutz‐Gain Pol. 12 20850 Mendaro Spain

Abstract

AbstractA gerotor pump is a two‐piece mechanism where two rotational components, interior and exterior, engage each other via a rotational motion to transfer a fluid in a direction parallel to their rotational axes. A natural question arises on what shape of the gerotor is the optimal one in the sense of maximum fluid being pumped for a unit of time, given the constraint of a fixed material needed to manufacture the pump. As there is no closed‐formula to answer this question, we propose a new algorithm to design and optimize the shape of gerotor pumps to be as efficient as possible. The proposed algorithm is based on a fast construction of the envelope of the interior component and subsequent optimization. We demonstrate our algorithm on a benchmark gerotor and show that the optimized solution increases the estimated flowrate by 16%. We also use our algorithm to study the effect of the number of teeth on the cavity area of a gerotor.

Funder

Eusko Jaurlaritza

Agencia Estatal de Investigación

Publisher

Wiley

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