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Application of Cavitation Based Micro-Bubbles to Recover Neutrally Buoyant Oil Droplets

机译:空化微气泡的应用恢复中性浮油液滴

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Small neutrally buoyant oil droplets are difficult to remove from water under any condition, but this difficulty is compounded in oil spills in open water. While floating oil can be collected using several existing methods, there are currently few practical methods for recovering neutrally buoyant oil dispersed in the water column. In this work, a large number of cavitation generated microbubbles, small enough to attach to oil droplets and large enough to help the droplets rise to the surface in a timely manner were effectively used for oil recovery. Bubble generators using special nozzle designs induced cavitation in submerged water jets creating cavitation, bubble shearing and break up, and generated masses of poly-dispersed bubbles, ranging in size from a few microns to 300 microns. The generators used vortex cavitation initiated in swirl chambers. The bubble sizes and numbers produced were measured by means of image analysis of high speed videos. The effects of the various operating conditions on the bubble size distributions were investigated. The recovery of three types of crude oils from water under various salinities and bubble concentrations was measured.
机译:小中性浮力油滴难以在任何条件下从水中除去,但这种困难在开放水中的漏油中复合。虽然可以使用几种现有方法收集浮动油,但目前有很少的实用方法可以在水柱中回收分散在水柱中的中性浮力油。在这项工作中,大量空化产生微泡,足够小以连接油滴,足够大以及时地帮助液滴时及时地升到表面,有效地用于采油。使用特殊喷嘴的泡沫发生器设计潜水喷射器的诱导空化产生空化,泡沫剪切和分解,并产生的质量为聚分散的气泡,范围从几微米到300微米。发电机在旋流室中使用涡旋空化。通过高速视频的图像分析来测量产生的气泡尺寸和数字。研究了各种操作条件对泡沫尺寸分布的影响。测量从各种盐度和气泡浓度下从水中回收三种类型的原油。

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