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Experimental study on the bubble breakage in a stirred tank Part 2: Local dependence of breakage events

机译:搅拌罐第2部分泡泡破损的实验研究:破损事件的局部依赖性

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Experimental observation of the local breakage behavior of a single bubble injected in different locations in a stirred tank was carried out using high speed imaging method. The bubble was injected in six positions located at different radial and tangential distances from a Rushton turbine impeller. The effect of relative location from the impeller on the breakage probability and the number of daughter bubbles (fragments) was investigated and discussed. The effect of power input (or Reynolds number) and mother bubble size on the breakage events for each injection position was studied. Trajectories of the bubbles were analyzed and quantified. It was found that the breakage probability and the number of produced daughter bubbles were large close to the impeller but decreases sharply when injecting the bubble away from the impeller, i.e. at r/R = 0.64 (where r is the distance from the impeller center and R is the tanks radius) or more from the impeller blade. The presence of baffles affected the breakage probability and the number of daughter bubbles in the regions around them. The breakage events were observed to occur in different sub-regions between the impeller and the wall after the bubble had exhibited different degrees of local deformation. For low Re, most of the bubbles injected close to the impeller were found to approach the impeller and then get pushed toward the tank's wall by the flow current ejected from the blades tip. For high Re, a considerable percentage of bubbles were found to be driven into the impeller by highly rotating flow currents and turbulent eddies. This led to an increase in the breakage probability in the impeller vicinity.
机译:使用高速成像方法进行在搅拌槽中的不同位置注入的单个气泡的局部破损行为的实验观察。将气泡注入位于六个位置,位于距离Rushton涡轮机叶轮不同的径向和切向距离处。研究并讨论了叶轮对破损概率和子气泡(片段)的相对位置对叶轮的影响和子泡(片段)的影响。研究了电力输入(或雷诺数)和母泡尺寸对每个注射位置的破损事件的影响。分析和量化气泡的轨迹。结果发现,在将气泡注入远离叶轮时,即在r / r = 0.64(其中R是距离叶轮中心的距离和叶轮中心的距离时,破损概率和产生的子气泡的数量靠近叶轮靠近叶轮而急剧下降R是储罐半径)或更多来自叶轮刀片。挡板的存在影响了它们周围地区的破裂概率和子泡沫的数量。观察到破损事件发生在气泡呈现不同程度的局部变形之后在叶轮和壁之间的不同子区域中发生。对于低Re,发现靠近叶轮的大多数气泡接近叶轮,然后通过从叶片尖端喷射的流动电流向罐的壁推向罐的壁。对于高回收,发现相当大的气泡通过高旋转的流动电流和湍流漩涡被驱动到叶轮中。这导致叶轮附近的破损概率增加。

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