Department of Chemical Engineering, Kyoto University, Kyoto 615-8510, Japan.
Sci Rep. 2013;3:1190. doi: 10.1038/srep01190. Epub 2013 Feb 1.
We demonstrate that a vibration-induced air inflow can cause vigorous bubbling in a bed of fine particles and report the mechanism by which this phenomenon occurs. When convective flow occurs in a powder bed as a result of vibrations, the upper powder layer with a high void ratio moves downward and is compressed. This process forces the air in the powder layer out, which leads to the formation of bubbles that rise and eventually burst at the top surface of the powder bed. A negative pressure is created below the rising bubbles. A narrow opening at the bottom allows the outside air to flow into the powder bed, which produces a vigorously bubbling fluidized bed that does not require the use of an external air supply system.
我们证明了振动引起的气流流入可以在细颗粒床中引起剧烈的气泡沸腾,并报告了这种现象发生的机制。当由于振动而在粉末床中发生对流流动时,具有高孔隙率的上层粉末向下移动并被压缩。这个过程迫使粉末层中的空气逸出,导致气泡形成,最终在粉末床的顶部表面破裂。上升气泡下方会产生负压。底部的狭窄开口允许外部空气流入粉末床,从而产生不需要外部供气系统的剧烈沸腾流化床。