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- W2113304227 abstract "Coalescence times are reported for bubbles of H2S and CO2 formed on adjacent nozzles in water. With CO2, times were small (1–3 ms) at pressures below 2 MPa, and rose to 20 ms at 3.4 MPa. With H2S, the logarithm of the coalescence time was proportional to pressure, and coalescence times reached 100 ms at 1.7 MPa. Film stretching rates were calculated assuming that the film surfaces were slightly immobile. By using a form of Vrij's theory for the inherent breaking time of films of constant thickness, the effective number of immobile layers could be calculated. Since these were in the range 10−2 to 10−3, only a small amount of “stiffness” in the film surface is enough to cause large changes in coalescence time. On rapporte les temps de coalescence dans le cas de bulles de H2S et de CO2 formées dans l'eau sur des ajutages adjacents. Pour CO2, les temps de coalescence se sont avérés faibles (1 à 3 minisecondes) à des pressions absolues inférieures à 2MP; ils se sont accrus à 20 minisecondes à une pression absolue de 3.4. Dans le cas de H2S, le logarithme du temps de coalescence a été proportionnel à la pression et les temps de coalescence ont atteint 100 minisecondes à une pression absolue de 1.7MP. On a calculé les taux d'étirage des pellicules en supposant que les surfaces de celles-ci étaient légèrement immobiles. En employant une forme de la théorie de Vrij Telativement au temps inhérent de rupture des pellicules d'épaisseur constante, on a pu calculer le nombre effectif des couches immobiles; vu que celles-ci variaient entre 10−2 et 10−3, měme une faible quantité de rigidité dans la surface de la pellicule s'est avérée suffisante pour produire des changements considérables dans le temps de coalescence." @default.
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- W2113304227 title "The coalescence of H<sub>2</sub>S and CO<sub>2</sub>bubbles in water" @default.
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- W2113304227 doi "https://doi.org/10.1002/cjce.5450540503" @default.
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