论文标题
气泡窗帘中的空隙分数和气泡尺寸分布的原位测量
In-situ measurements of void fractions and bubble size distributions in bubble curtains
论文作者
论文摘要
我们报告了一种新型测量系统的开发,该系统旨在测量气泡窗帘(即平面气泡羽流)的气泡特性,并与声学测量一起进行原位。我们的方法基于与光学系统结合使用的电气,接触基的针传感器。后者用于校准和验证目的。在局部空隙分数和气泡大小分布方面,校正针尖的不敏感距离可以在两种方法之间达成很好的一致性。最后,该系统被用来研究从三种不同的软管类型演变而来的气泡羽流。所有软管均表现出一致的自相似行为,随着气流的增加,扩散速率增加。与其他两种具有离散孔或喷嘴元件的软管类型相比,当气泡羽流起源于多孔软管时,进一步的扩散会明显更高。
We report the development of a novel measurement system designed to measure bubble properties in bubble curtains (i.e. planar bubble plumes) in-situ alongside acoustical measurements. Our approach is based on electrical, contact-based needle sensors in combination with an optical system. The latter is used for calibration and validation purposes. Correcting for the insensitive distance of the needle tips yields very good agreement between the two approaches in terms of the local void fraction and bubble size distributions. Finally, the system is employed to study bubble plumes evolving from three different hose types. All hoses display consistent self-similar behaviour with spreading rates increasing with increasing gas flow. The spreading is further found to be significantly higher when the bubble plumes originated from a porous hose compared to the two other hose types featuring either discrete holes or nozzle elements.