Nanoliter-droplet breakup in either symmetrically or asymmetrically confined T-shaped junctions is experimentally studied. The critical condition with which nanoliter droplets will break equally is theoretically analyzed based on the pressure-driven mechanism. The scaling analysis is experimentally confirmed, implying that the droplet breakup in a confined T-shaped junction is a pressure-driven process when the capillary number is less than similar to 0.1. A semi-empirical correlation is obtained for predicting the equal breakup in symmetric T-shaped junctions. The critical condition is found to be dependent on the initial droplet length, channel depth and capillary number. Besides the equal breakup of nanoliter droplets, a new droplet breakup pattern, unequal breakup, is observed in the symmetric T-shaped junction. In asymmetric T-shaped junctions the nanoliter-droplet breakup is found to be very difficult.
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Univ Bordeaux 1, Inst Math Bordeaux, UMR 5251, Mc2,INRIA Bordeaux Sud Ouest, 351 Cours Liberat, F-33405 Talence, FranceUniv Bordeaux 1, Inst Math Bordeaux, UMR 5251, Mc2,INRIA Bordeaux Sud Ouest, 351 Cours Liberat, F-33405 Talence, France
Colin, M.
Colin, T.
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Univ Bordeaux 1, Inst Math Bordeaux, UMR 5251, Mc2,INRIA Bordeaux Sud Ouest, 351 Cours Liberat, F-33405 Talence, FranceUniv Bordeaux 1, Inst Math Bordeaux, UMR 5251, Mc2,INRIA Bordeaux Sud Ouest, 351 Cours Liberat, F-33405 Talence, France
Colin, T.
Dambrine, J.
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Lab Math & Applicat, UMR 6086, Teleport 2 BP 30179,Blvd Marie & Pierre Curie, F-86962 Futuroscope, Chasseneuil, FranceUniv Bordeaux 1, Inst Math Bordeaux, UMR 5251, Mc2,INRIA Bordeaux Sud Ouest, 351 Cours Liberat, F-33405 Talence, France