Résumé
Oil is needed for most of the compressors in HVAC industry but oil circulating in the system is unfavorable for the heat exchanger performance and cycle efficiency. A common solution for the oil issue is separating oil at the compressor discharge and returning it back to the compressor. For compactness, oil separation structure integrated into the compressor is more and more popular than traditional external oil separator. Therefore, analytical tools and design guidelines of oil separation structure is important, especially for irregular geometry and realistic flow condition at the compressor discharge. As one of the major mechanisms of droplet separation, impinging separation mechanism is studied by flow visualization and CFD simulation in this paper. The video of oil mist flowing through the baffles and plates is captured by a high-speed camera and analyzed quantitatively. CFD simulation is carried out for investigating the flow field and performance of impinging separator. Refrigerant vapor is calculated in the first step and discrete phase model is used to track the droplet movement in the second step. Droplet size distribution and overall separation efficiency are used to validate the CFD simulation results. Both flow visualization and CFD simulation provide useful tools for oil separator design. The results and conclusions from this study give useful guidelines about how to reduce the oil circulation ratio by designing better oil separator for the compressor.
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Détails
- Titre original : Flow visualization and CFD simulation of impinging oil separator for compressors.
- Identifiant de la fiche : 30024335
- Langues : Anglais
- Source : 2018 Purdue Conferences. 24th International Compressor Engineering Conference at Purdue.
- Date d'édition : 09/07/2018
Liens
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Indexation
- Thèmes : Compresseurs
- Mots-clés : CFD; Conception; Rendement; Refoulement; Séparateur d'huile; Écoulement; Échangeur de chaleur; Compresseur
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- Langues : Japonais
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- Auteurs : KANG G. H., KIM G. T., KIM M. S.
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