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首页> 外文期刊>Journal of Microscopy >Dynamic imaging of multiphase flow through porous media using 4D cumulative reconstruction
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Dynamic imaging of multiphase flow through porous media using 4D cumulative reconstruction

机译:使用4D累积重建通过多孔介质通过多相流动的动态成像

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摘要

Summary This paper introduces an original application on reconstruction strategies for X‐ray computed microtomography, enabling the observation of time‐dependent changes that occur during multiphase flow. In general, by sparsely collecting radiographs, the reconstruction of the object is compromised. Optimizations can be achieved by combining specific characteristics of the dynamics with the acquisition. Herein, the proposed method relies on short random intervals in which no drastic changes occur in the sample to acquire as many radiographs as possible that constitute a reconstructible data set. As these intervals are unpredictable, the method tries to guarantee that the collected radiograph data during these specific intervals are enough to recover useful information about the dynamics. Simulations of a percolating fluid in a digital rock are used to replicate an X‐ray computed microtomography experiment to test the proposed method. The results demonstrate the potential of the proposed strategy for imaging multiphase flow in porous media and how data collected during distinct events can be combined to enhance the reconstruction of frames of the percolation process.
机译:发明内容本文介绍了对X射线计算的微观图的重建策略的原始应用,从而能够观察在多相流中发生的时间依赖性变化。通常,通过稀疏地收集射线照相,对象的重建受到损害。通过将动态的特定特征与采集相结合来实现优化。这里,所提出的方法依赖于短的随机间隔,其中在样本中没有发生剧烈变化以获取尽可能多的X线片,这构成了可重建的数据集。由于这些间隔是不可预测的,该方法试图保证在这些特定间隔期间收集的射线照相数据足以恢复有关动态的有用信息。数字岩石中的渗透流体的模拟用于复制X射线计算的微观图实验以测试所提出的方法。结果证明了多孔介质中的成像多相流动的提出策略的潜力以及如何组合在不同事件期间收集的数据来增强渗流过程的重建。

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