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A Langrangian Study of Solids Suspension in a Stirred Vessel by Positron Emission Particle Tracking (PEPT)

机译:用正电子发射粒子跟踪(PEPT)对搅拌容器中的固体悬浮物进行拉格朗日研究

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A technique of Positron Emission Particle Tracking (PEPT) was used to obtain information on the flow behavior of coarse particles suspended in pseudoplastic liquids agitated by axial-hydrofoil Lightnin impellers A320 and A410. PEPT enables the position of a 600 μm radioactive particle tracer inserted inside one of the suspended particles to be detected many times per second and its full trajectory followed inside the vessel. Particle trajectory analysis yielded information on particle circulation, velocity distribution, and spatial occupancy. The minimum speed for complete particle suspension, N_(js), was also determined. The well-known Zwietering correlation failed to predict the measurements by a substantial margin, suggesting that it is inadequate for viscous non-Newtonian liquids.
机译:正电子发射粒子跟踪(PEPT)技术用于获得有关悬浮在由轴向水翼Lightnin叶轮A320和A410搅动的假塑性液体中的粗颗粒流动行为的信息。 PEPT可以每秒多次检测插入到一个悬浮颗粒内部的600μm放射性颗粒示踪剂的位置,并跟踪其在容器内部的完整轨迹。粒子轨迹分析产生了有关粒子循环,速度分布和空间占用的信息。还确定了完全粒子悬浮的最小速度N_(js)。众所周知的Zwietering相关性未能大幅度预测测量结果,这表明它不适用于粘性非牛顿液体。

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