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| Titre:  | Comparative Assessment of Non-newtonian Single-Phase and Two-Phase Approaches for Numerical Studies of Centrifugal Pumps Handling Emulsion |  
| Auteur(s):  | Achour, Lila Specklin, Mathieu Asuaje, Miguel Kouidri, Smaine Belaidi, Idir |  
| Mots-clés:  | CFD Emulsion Non-Newtonian Pump Two-phase models |  
| Date de publication:  | 2024 |  
| Editeur:  | Springer Nature |  
| Collection/Numéro:  | Advances in Computational Heat and Mass Transfer. ICCHMT 2023. Lecture Notes in Mechanical Engineering. Springer, Cham.;pp.  505 - 514 |  
| Résumé:  | Computational Fluid Dynamics is commonly employed to assess the effect of oil-water emulsions on pump performance, usually using two-phase models. However, these models often neglect the emulsion’s non-Newtonian behavior, despite its known experimental significance in enhancing pump performance. This study attempts to evaluate both single-phase non-Newtonian and two-phase approaches to model emulsion flow within centrifugal pumps. The non-Newtonian single-phase and several two-phase models are evaluated by comparing the predicted pump heads with experimental data of a multistage pump from the literature. The findings show that the non-Newtonian single-phase model generally provides better agreement with experimental measurements, particularly for emulsions with low dispersed phase fractions. Nevertheless, for emulsions with a high dispersed phase fraction (≈ 50%), the difference between the two approaches is insignificant. Thus, due to the lack of a universal multiphase model for emulsion simulation, the non-Newtonian single-phase model can serve as a viable alternative, overcoming the limitations of two-phase approaches in simulating complex multiphase fluid systems. |  
| URI/URL:  | https://link.springer.com/chapter/10.1007/978-3-031-66609-4_46 https://doi.org/10.1007/978-3-031-66609-4_46 http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/14305 |  
| ISBN:  | 978-303166608-7 |  
| ISSN:  | 2195-4356 |  
| Collection(s) : | Communications Internationales
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