Analyse d'un détenteur bi-vis pour les systèmes à cycle organique de Rankine ayant recours à la mécanique numérique des fluides sur un modèle à gaz réel.

Analysis of a twin screw expander for ORC systems using computational fluid dynamics with a real gas model.

Numéro : pap. 1478

Auteurs : PAPES I., DEGROOTE J., VIERENDEELS J.

Résumé

With the increase in energy prices and environmental constraints, recovering the energy from low grade waste heat presents an important challenge. The Organic Ranke Cycles (ORCs) are widely used, but there is still need to improve their efficiency (especially for small scale energy production). This paper presents the Computational Fluid Dynamics (CFD) analysis of a twin screw expander which is used for power generation in an ORC system with refrigerant R245fa. The deforming mesh motion is handled by an in-house code which generates a block-structured grid with the help of the solutions of Laplace problems. The properties of refrigerant R245fa are derived from the Augnier Redlich-Kwong cubic equation of state which is incorporated in the computational model. From the results of a CFD analysis, the pressure-volume diagram, mass flow rates and power output for different pressure ratios and different designs were obtained. In order to evaluate the effects of individual clearance gaps on the performance of the expander, time dependent mass flow diagrams for each of them are provided and studied. It can be concluded that the influence of the leakage flows increases with decrease in rotational speed or with the increase in pressure ratio. To avoid losses during the filling, an optimized design of the inlet port is necessary.

Documents disponibles

Format PDF

Pages : 10 p.

Disponible

  • Prix public

    20 €

  • Prix membre*

    15 €

* meilleur tarif applicable selon le type d'adhésion (voir le détail des avantages des adhésions individuelles et collectives)

Détails

  • Titre original : Analysis of a twin screw expander for ORC systems using computational fluid dynamics with a real gas model.
  • Identifiant de la fiche : 30014095
  • Langues : Anglais
  • Source : 2014 Purdue Conferences. 22nd International Compressor Engineering Conference at Purdue.
  • Date d'édition : 14/07/2014

Liens


Voir d'autres communications du même compte rendu (138)
Voir le compte rendu de la conférence