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MIXING AND DISPERSION MEASUREMENTS ON PACKED BED FLOWS USING A FIBEROPTIC PROBE ARRAY

机译:使用光纤探针阵列测量袋装流动中的混合和色散

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Scale-up of packed bed processes, particularly those involving chromatographic separations, is made difficult by a seemingly inevitable increase in dispersion due to packing nonuniformity. To provide a suitable characterization, we measured the spatial distribution of dispersion and mixing in packed beds of uniform Impervious spherical glass particles by a tracer impulse technique. The key feature in our work is the use of a fiberoptic array at the exit plane to obtain a time-resolved spatially-distributed response. All experiments wire in the creeping flow regime. We used a fluorescent dye with laser excitation through the fiber terminations in the bed. The fluoresced radiation was collected through the same fibers. We analysed the data by the use of indices of the extent of micromixing based on Danckwerts's degree of segregation. This requires the computation of moments of the responses of the individual probes and their average. A simple model gives expressions for the indices in terms of the Peclet number and is shown to provide a useful limiting case. The computed indices are also shown to be very sensitive to adsorption of dye on the surface of the glass spheres. However, for some of the experiments with the largest spheres made of Pyrex glass, adsorption appears to have played an insignificant role. This technique successfully separates overall bed dispersion into two parts that due to large-scale transverse variation of the flow residence time, and that due to mixing on the microscale. [References: 13]
机译:由于填料不均匀性,似乎不可避免地增加了分散度,使填料床工艺(尤其是涉及色谱分离的工艺)难以按比例放大。为了提供合适的表征,我们通过示踪脉冲技术测量了均匀不透水球形玻璃颗粒在填充床上的分散和混合的空间分布。我们工作的关键特征是在出口平面使用光纤阵列来获得时间分辨的空间分布响应。所有实验均采用蠕变流态。我们使用荧光染料通过床中的光纤终端进行激光激发。通过相同的纤维收集发荧光的辐射。我们使用基于Danckwerts偏析程度的微混合程度指标来分析数据。这需要计算单个探针的响应矩及其平均值。一个简单的模型以Peclet数的形式给出了索引的表达式,并显示了一个有用的极限情况。还表明计算出的指数对染料在玻璃球表面的吸附非常敏感。但是,对于一些使用派热克斯玻璃制成的最大球体的实验,吸附似乎起着微不足道的作用。该技术成功地将整个床层的分散分为两部分,这归因于流动停留时间的大规模横向变化以及归因于微观尺度上的混合。 [参考:13]

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