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Dynamic bubble behavior during boiling in bead-packed structures

机译:珠粒填充结构在沸腾过程中的动态气泡行为

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An experimental investigation was conducted to visually observe the boiling behavior in a three-dimensional porous structure made of staggered glass beads, especially the dynamic bubble process and pore-scale liquid flow around bubbles associated with the heat and mass transport taking place at the bubble interface. The experiments show that the dynamic bubble behavior was significantly affected by the bead-packed structure, and several unique boiling phenomena caused by special pore geometry were observed and discussed. The bubble shape and primary bubble interface were described using a force balance acting on the bubble. A theoretical study was performed to describe and evaluate the behavior of the replenished liquid and associated interfacial transport effects. It was concluded from the theoretical analysis that the bubble interface is regulated by interfacial heat and mass transport to provide sufficient driving force for the replenishment. This conclusion is in agreement with the experimental observation.
机译:进行了实验研究,目视观察了交错玻璃珠制成的三维多孔结构中的沸腾行为,特别是动态气泡过程和气泡周围的孔尺度液体流动,这些气泡与气泡界面处发生的热量和质量传递有关。 。实验表明,动态气泡行为受到珠粒堆积结构的显着影响,并观察和讨论了由特殊的孔几何形状引起的几种独特的沸腾现象。使用作用在气泡上的力平衡来描述气泡形状和主要气泡界面。进行了理论研究,以描述和评估补充液体的行为以及相关的界面传输效应。从理论分析得出结论,气泡界面受界面热和质量传递调节,从而为补充提供足够的驱动力。这一结论与实验观察相符。

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