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Vertical two-phase flow regimes and pressure gradients under the influence of SDS surfactant

机译:SDS表面活性剂影响下的垂直两相流态和压力梯度

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Two-phase gas/liquid flows in vertical pipes have been systematically investigated. Water and SDS surfactant solutions at various concentrations were used as the working fluids. In particular, we focus our work on the influence of surfactant addition on the flow regimes, the corresponding pressure gradients, and the bubble sizes and velocity. Adding the surfactant lowers the air critical Reynolds numbers for the bubble-slug flow and the slug flow transitions. The pressure gradients of SDS solutions are lower than those of pure water especially in the slug flow and the slug-churn flow regimes, implying turbulent drag reduction. At low Re-air, the bubble sizes of the surfactant solution are lower than those of pure water due to the increase in viscosity. With increasing and at high Re-air, the bubble sizes of the SDS solution become greater than those of pure water which is attributed to the effect of surface tension. (C) 2007 Elsevier Inc. All rights reserved.
机译:已经对立管中的两相气/液流进行了系统研究。使用各种浓度的水和SDS表面活性剂溶液作为工作流体。特别是,我们将工作重点放在表面活性剂添加对流动状态,相应的压力梯度以及气泡大小和速度的影响上。添加表面活性剂降低了气泡团流和团流转变的空气临界雷诺数。 SDS溶液的压力梯度低于纯水的压力梯度,尤其是在团状流和团状流态下,这意味着减少了湍流阻力。在低Re-air下,由于粘度增加,表面活性剂溶液的气泡尺寸要比纯水的气泡尺寸小。随着增加并在较高的二次空气中,SDS溶液的气泡尺寸变得比纯水的气泡尺寸大,这归因于表面张力的影响。 (C)2007 Elsevier Inc.保留所有权利。

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