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首页> 外文期刊>Solid State Nuclear Magnetic Resonance >Visualization of transport: NMR microscopy experiments with model objects for porous media with pore sizes down to 50 |μm
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Visualization of transport: NMR microscopy experiments with model objects for porous media with pore sizes down to 50 |μm

机译:传输的可视化:NMR显微镜实验,对象为孔径小于50 |μm的多孔介质的模型对象

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摘要

Hydrodynamic flow and electric currents through model porous media were investigated. The transport rates through the individual pathways of the pore network are determined by the local width of the pore channels and by the driving mechanism. The model objects represent quasi two-dimensional random site percolation clusters. The calculated design was realized by milling the structure in polystyrene sheets. Velocity maps of stationary flow and current density maps of stationary currents through the cluster were acquired by magnetic resonance imaging methods. The findings were compared to the results of numerical simulations based on the same structure. Since the difference in the transport patterns of the different driving mechanisms are expected to be more pronounced in smaller pore spaces, ultra deep X-ray lithography has been used for the fabrication of downsized model objects with a spatial resolution of better than 50μm and an aspect ratio as large as 20. First results obtained with these objects are reported.
机译:研究了通过模型多孔介质的流体动力流和电流。通过孔网络的各个路径的传输速率取决于孔通道的局部宽度和驱动机制。模型对象表示准二维随机站点渗滤簇。通过在聚苯乙烯片中铣削结构来实现计算的设计。通过磁共振成像方法获得通过簇的固定流的速度图和固定电流的电流密度图。将结果与基于相同结构的数值模拟结果进行比较。由于在较小的孔隙空间中不同驱动机制的传输模式的差异预计会更加明显,因此超深X射线光刻技术已用于制造尺寸小于50μm的尺寸缩小的模型对象,比率高达20。

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