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Application of electrical resistance tomography in bubble columns for volume fraction measurement

机译:电阻层析成像在鼓泡塔中用于体积分数测量的应用

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Bubble columns have been widely used in chemical and pharmacy industries for its simplicity and efficiency. In bubble column, air distribution depends on various factors, e.g. sieve plate pattern, air and liquid volumes, temperatures, which in turn determines the efficiency of the reaction. Real-time measurement of air volume fraction distribution is of significant importance for process control and further optimization of the reactor. Therefore, great attentions have been paid to this problem in recent studies. Generally, conventional methods, e.g. differential pressure and conductivity probe method, can only obtain a lumped parameter or local information. Hence, electrical resistance tomography technique has been introduced to provide real-time measurement of air volume fraction distribution within its sensing region. With a dual-plane sensor, the electrical resistance tomography system could generate cross-sectional images as well as flow velocity map. Moreover, both global and local information of the flow can be obtained by data/image post-processing. Experimental results show that test results from electrical resistance tomography are in good accordance with those from conventional methods, i.e. only 5% deviation.
机译:气泡塔以其简单和高效而已广泛用于化学和制药行业。在鼓泡塔中,空气分布取决于多种因素,例如筛板的样式,空气和液体的体积,温度,这反过来又决定了反应的效率。空气体积分数分布的实时测量对于过程控制和反应器的进一步优化非常重要。因此,在最近的研究中已经对该问题给予了极大的关注。通常,常规方法例如差压和电导率探针法,只能获得集总参数或局部信息。因此,已经引入了电阻层析成像技术,以提供其感测区域内空气体积分数分布的实时测量。使用双平面传感器,电阻层析成像系统可以生成横截面图像以及流速图。而且,可以通过数据/图像后处理来获得流的全局信息和局部信息。实验结果表明,电阻层析成像的测试结果与常规方法的结果非常吻合,即偏差仅为5%。

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