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首页> 外文期刊>Journal of Colloid and Interface Science >Pressure-driven motion of surfactant-laden drops through cylindrical capillaries: effect of surfactant solubility
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Pressure-driven motion of surfactant-laden drops through cylindrical capillaries: effect of surfactant solubility

机译:载有表面活性剂的液滴通过圆柱毛细管的压力驱动运动:表面活性剂溶解度的影响

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摘要

The effect of bulk-soluble surfactants on the dynamics of a drop translating through a cylindrical tube under low-Reynolds-number conditions is investigated. Interfacial surfactant adsorption/desorption is modeled according to the Frumkin adsorption framework, and the bulk-insoluble surfactant limits is recovered as the rate of surfactant sorption becomes large compared to that of bulk diffusion. As the equilibrium surface coverage is increased, the mechanism by which drop mobility is reduced changes from uniform retardation at low surface coverage to the formation of a stagnant cap at high surface coverage. For large capillary numbers, the drop does not achieve a steady shape, and eventually it breaks up either through the formation of a penetrating viscous jet of suspending fluid, or by continuous elongation and pinch-off. Surfactants have a destabilizing effect on transient drop shapes by accelerating the formation and development of the penetrating viscous jet that leads to drop breakup. The critical conditions for drop breakup, as well as the mode of breakup, depend on the manner in which the strength of the flow (i.e., the capillary number) is increased.
机译:研究了在低雷诺数条件下,可溶表面活性剂对通过圆柱管的液滴动力学的影响。根据Frumkin吸附框架对界面活性剂的吸附/脱附进行了建模,并且当表面活性剂的吸附速率比本体扩散速率大时,本体不溶性表面活性剂的限值得以恢复。随着平衡表面覆盖率的增加,降低液滴流动性的机理从低表面覆盖率下的均匀延迟变为高表面覆盖率下形成停滞帽。对于较大的毛细管数,液滴无法达到稳定的形状,最终通过形成悬浮液的渗透性粘性射流或通过连续伸长和夹断而破裂。表面活性剂通过加速渗透性粘性射流的形成和发展而导致液滴分裂,从而对瞬态液滴形状产生不稳定作用。液滴破裂的临界条件以及破裂的方式取决于增加流动强度(即毛细管数)的方式。

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