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Pore network simulations of drying of capillary porous media. Influence of thermal gradients

机译:毛细管多孔介质干燥的孔网络模拟。热梯度的影响

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摘要

A pore network model of drying with heat transfer is developed. The model is applied to study the influence of surface tension gradients induced by thermal gradients on the phase distribution within a capillary porous medium. The numerical simulations show that surface tension gradients can lead to invasion percolation in a destabilizing gradient (IPDG) patterns or invasion percolation in a stabilizing gradient patterns depending on the sign of thermal gradient. The surface tension gradient effect is shown to be significant for sufficiently weakly disordered porous media. The results arc summarized on a phase diagram delineating the various patterns that can be expected as functions of thermal gradient and disorder parameter. This diagram is pertinent to situations where occupation probability gradients induced by viscous or gravity effects are negligible. The results also indicate the possibility of a somewhat paradoxical convective drying situation when thermal gradients and disorder are such that a IPDG pattern develops. In this case, contrary to more conventional situations, it may be much more efficient to blow an air colder than the porous medium initial temperature.
机译:建立了热交换干燥的孔网络模型。该模型用于研究由热梯度引起的表面张力梯度对毛细管多孔介质内相分布的影响。数值模拟表明,取决于热梯度的符号,表面张力梯度可能导致破坏稳定梯度(IPDG)模式的侵入渗滤或导致稳定梯度模式的侵入渗滤。对于足够弱的无序多孔介质,表面张力梯度效应显示出显着的效果。结果总结在相图上,该相图描绘了可以预期作为热梯度和无序参数的函数的各种模式。该图与粘性或重力效应引起的职业概率梯度可忽略不计的情况有关。结果还表明,当热梯度和无序状态发展为IPDG模式时,对流干燥情况可能会有些矛盾。在这种情况下,与更常规的情况相反,吹入比多孔介质初始温度更冷的空气可能会更有效。

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