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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Local Velocity and Concentration of the Single Components in Water/Oil Mixtures Monitored by Means of MRI Flow Experiments in Steady Tube Flow
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Local Velocity and Concentration of the Single Components in Water/Oil Mixtures Monitored by Means of MRI Flow Experiments in Steady Tube Flow

机译:水/油混合物中单组分的局部速度和浓度通过稳定管流中的MRI流动实验监测

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摘要

In this paper the spatially resolved determination of velocities in two-phase systems consisting of water and oil by means of nuclear magnetic resonance (NMR) imaging (MRI) techniques is described and applied to steady tube flows with regard to the total flow rate. As MRI offers the possibility to study the flow of multiphase materials spatially resolved with various forms of contrast, even optically opaque water/oil mixtures can be studied in the interior of the material. Besides snapshot images of the actual flow pattern also local velocity and concentration field of both phases can be obtained separately. The insight into the inner micro flow processes and microstructure allows to characterize fluid mixtures or emulsions. Flow rate and preparation/mixing method were varied in order to realize changes of the flow pattern and the structure of the mixture during flow. Physical models of the flow behavior and physical stability of these complex systems can be based upon this information.
机译:在本文中,描述了通过核磁共振(NMR)成像(MRI)技术对由水和油组成的两相系统中的速度进行空间分辨确定的方法,并将其应用于相对于总流量的稳定管流量。由于MRI提供了研究以各种形式的对比度在空间上解析的多相材料流的可能性,因此甚至可以在材料内部研究光学不透明的水/油混合物。除了实际流型的快照图像之外,还可以分别获得两相的局部速度和浓度场。对内部微流动过程和微结构的深入了解可以表征流体混合物或乳液。改变流速和制备/混合方法以实现流动过程中流动模式和混合物结构的变化。这些复杂系统的流动行为和物理稳定性的物理模型可以基于此信息。

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