首页> 外文会议>ASME Joint U.S.-European Fluids Engineering Conference >MEASURING MATERIAL DISTRIBUTIONS OF MULTIPHASE FLOWS IN ELECTRICALLY CONDUCTING VESSELS USING ELECTRICAL-IMPEDANCE TOMOGRAPHY
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MEASURING MATERIAL DISTRIBUTIONS OF MULTIPHASE FLOWS IN ELECTRICALLY CONDUCTING VESSELS USING ELECTRICAL-IMPEDANCE TOMOGRAPHY

机译:使用电阻断层扫描测量多相流动的多相流动的材料分布

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An implementation of resistive electrical-impedance tomography (EIT) for measuring material distributions of multiphase flows in vessels with electrically conducting walls is presented. Seven ring electrodes are equally spaced on a thin nonconducting rod that is inserted into the vessel. The vessel wall is grounded and serves as the ground electrode. Voltage distribution measurements are used to numerically reconstruct the time-averaged impedance distribution within the vessel, from which the material distributions are inferred. Experimental results for the case in which the rod is inserted coaxially into a liquid-filled vertical standpipe containing beds of different heights of nonconducting solid particles are presented. Agreement between the direct measurement and the numerical reconstruction of the particle-bed height is good. Application of this technique to a pilot-scale slurry bubble-column reactor is discussed.
机译:呈现了用于测量具有导电壁的容器中多相流动材料分布的电阻电阻断层扫描(EIT)的实施。七个环形电极在插入容器中的薄非导电杆上等距。血管壁接地并用作接地电极。电压分布测量用于在数值上重建血管内的时间平均阻抗分布,从中推断出材料分布。呈现杆同轴插入含有非导电固体颗粒的不同高度的液体垂直立管床中的情况的实验结果。直接测量与颗粒床高度的数值重建之间的协议是好的。讨论了该技术将该技术应用于先导级浆料泡柱反应器。

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