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Drying of porous media by concurrent drainage and evaporation: A pore network modeling study

机译:同时排水和蒸发干燥多孔介质:孔网络建模研究

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Drainage and evaporation can occur simultaneously during the drying of porous media, but the interactions between these processes and their effects on drying are rarely studied. In this work, we develop a pore network model that considers drainage, evaporation, and rarefied multi-component gas transport in porous media with nanoscale pores. Using this model, we investigate the drying of a liquid solvent-saturated porous medium enabled by the flow of purge gas through it. Simulations show that drying progresses in three stages, and the solvent removal by drainage effects (evaporation effects) becomes weaker (stronger) as drying progresses through these stages. Interestingly, drainage can contribute considerably to solvent removal even after evaporation effects become very strong, especially when the applied pressure difference across the porous medium is low. We show that these phenomena are the results of the coupling between the drainage and evaporation effects and this coupling depends on the operating conditions and the stage of drying.
机译:在多孔介质干燥过程中,排水和蒸发可同时发生,但很少研究这些过程之间的相互作用及其对干燥的影响。在这项工作中,我们开发了一个孔隙网络模型,该模型考虑了在具有纳米级孔隙的多孔介质中的排水,蒸发和稀薄多组分气体传输。使用该模型,我们研究了通过吹扫气体流过的液体溶剂饱和的多孔介质的干燥。模拟表明,干燥过程分为三个阶段,并且随着干燥过程的进行,通过排水作用(蒸发作用)去除溶剂的能力变弱(更强)。有趣的是,即使在蒸发效果变得非常强后,尤其是在多孔介质上施加的压力差较低的情况下,排水也可以极大地帮助去除溶剂。我们表明,这些现象是排水和蒸发效应之间耦合的结果,而这种耦合取决于操作条件和干燥阶段。

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