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50微米以下的流量测量:光刻模型孔隙空间中的核磁共振显微镜实验。

Flow measurements below 50 mum: NMR microscopy experiments in lithographic model pore spaces.

作者信息

Kossel Elke, Kimmich Rainer

机构信息

Universität Ulm, 89069 Ulm, Germany.

出版信息

Magn Reson Imaging. 2005 Feb;23(2):397-400. doi: 10.1016/j.mri.2004.11.039.

Abstract

Quasi two-dimensional random site percolation model objects have been prepared using a synchrotron radiation lithography technique with a spatial resolution better than 50 microm and an aspect ratio of up to 17. Flow of water through the pore space was studied with the aid of an NMR velocity mapping method and compared with a computational fluid dynamics simulation. In order to be able to measure and map widely distributed flow velocities with microscopic resolution (typically 40 x 40 microm), an experimental protocol that permits one to cover an effectively very wide velocity field of view (0.6-10 mm/s) had to be developed.

摘要

已使用空间分辨率优于50微米且纵横比高达17的同步辐射光刻技术制备了准二维随机位点渗流模型对象。借助核磁共振速度映射方法研究了水在孔隙空间中的流动,并与计算流体动力学模拟进行了比较。为了能够以微观分辨率(通常为40×40微米)测量和绘制广泛分布的流速,必须开发一种实验方案,使人们能够覆盖一个实际上非常宽的速度视场(0.6 - 10毫米/秒)。

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