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Influence of temperature and electrolyte concentration on regime maps in vertical-adiabatic two-phase pipe flow

机译:温度和电解质浓度对垂直绝热两相管道流动状态图的影响

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The study of flow configuration and regime transitions in a vertical pipe is of primary interest for the understanding of the fundamentals of two-phase flow dynamics. Also, it is useful for the calibration of both interfacial forces and population balance models. This simple geometry allows for the isolation of each effect as the dynamics takes place mainly along one dimension. Most investigations deal with the flow configuration for different flow rates of both phases. But further investigations and new interesting results can be obtained by changing the physical properties of the base fluids and analyzing their influence on the flow dynamics. In this work we show the effects of temperature and electrolyte concentration in the flow configuration. The rise of temperature produces an unaccounted acceleration of the transitional effects. The addition of NaCl produces a delay of such effects thanks to the inhibition of bubble coalescence.
机译:对于了解两相流动力学的基本原理,研究立管中的流场配置和过渡状态尤为重要。同样,它对于界面力和总体平衡模型的校准都是有用的。这种简单的几何形状可以隔离每种效果,因为动力学主要沿一个维度发生。大多数研究都是针对两相不同流速的流量配置。但是,可以通过更改基础流体的物理特性并分析其对流动动力学的影响来获得进一步的研究结果和新的有趣结果。在这项工作中,我们展示了温度和电解质浓度在流动配置中的影响。温度升高产生过渡效应的无法解释的加速。由于抑制气泡聚结,因此添加NaCl会延迟此类效应。

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