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- W3090680092 abstract "The devolatilization of polymeric systems entails the expansion of bubbles by molecular diffusion of the solvent. Boiling of non-Newtonian polymer solutions and suspensions involves the nucleation and growth/collapse of bubbles. The mass, momentum, and energy transport in the context of bubble phenomena in stagnant and/or moving liquids which exhibit complex rheological behavior is central to the understanding of the various applications. The shape of a bubble not only influences its free-rise velocity but also plays an important role in determining the rates of heat and mass transfer and coalescence. In Newtonian fluids, small bubbles are known to display solid-sphere-like behavior and the transition from a no-slip to a zero-shear condition is fairly gradual. In applications involving relative motion between gas bubbles and a stagnant/moving liquid, the residence time of the gas is a key parameter which, in turn, depends on the free-rise velocity and the height of the equipment or liquid column." @default.
- W3090680092 created "2020-10-08" @default.
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- W3090680092 date "2020-10-07" @default.
- W3090680092 modified "2023-10-18" @default.
- W3090680092 title "Hydrodynamics of Free-Rise Bubbles in Non-Newtonian Polymer Solutions" @default.
- W3090680092 cites W2040032910 @default.
- W3090680092 doi "https://doi.org/10.1201/9781003067528-3" @default.
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