Document IIF

Écoulement diphasique de l’ammoniac à travers les jonctions en T horizontales et inclinées.

Ammonia two-phase flow through the horizontal and inclined impacting T-junctions.

Auteurs : RUZAIKIN V., LUKASHOV I., BREUS A.

Type d'article : Article de la RIF

Résumé

The two-phase ammonia flow through the horizontal and inclined impacting T-junctions has been experimentally studied. The phase separation has been investigated in the ID 4, 6 and 10 mm T-junctions at different saturation temperatures (30 to 65 ◦C), vapour qualities (0.1 to 0.7) and mass fluxes (50 to 300 kg⋅m-2s-1). Two separation patterns in the horizontal impacting T-junctions were observed. The first one, vapour momentum-independent, shows weak sensitivity of the phase separation behaviour on the pressure, inlet vapour quality and mass velocity. The second one, vapour momentum-dependent, is characterised by the region with the equal phase distribution between the T-junction outlets. The transition between the phase separation patterns does not depend on the inlet two-phase flow pattern. A straightforward phenomenological model was proposed for the separation pattern identification and the evaluation of the vapour quality in the outlet branch of the horizontal impacting Tjunctions with a feasible accuracy of ±20 %. Downward orientation (-45◦, -90◦) of the T-junction inlet leads to a higher phase maldistribution between the outlets than the upward and horizontal configuration. The effect
degrades with the mass velocity increase and diameter reduction. The inclination of the T-junction outlets regarding the horizontal plane enhances the phase separation, with the vapour-rich mixture going to the top outlet. The effect intensifies with the increase in the inclination angle and the decrease in the T-junction mass flow rate ratio.

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Format PDF

Pages : 10 p.

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Détails

  • Titre original : Ammonia two-phase flow through the horizontal and inclined impacting T-junctions.
  • Identifiant de la fiche : 30034235
  • Langues : Anglais
  • Source : International Journal of Refrigeration - Revue Internationale du Froid - vol. 175
  • Date d'édition : 07/2025
  • DOI : http://dx.doi.org/https://doi.org/10.1016/j.ijrefrig.2025.04.001

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