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Extraction of pore-morphology and capillary pressure curves of porous media from synchrotron-based tomography data

机译:从基于同步加速器的层析成像数据中提取多孔介质的孔隙形态和毛细管压力曲线

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摘要

The elevated level of atmospheric carbon dioxide (CO2) has caused serious concern of the progression of global warming. Geological sequestration is considered as one of the most promising techniques for mitigating the damaging effect of global climate change. Investigations over wide range of length-scales are important for systematic evaluation of the underground formations from prospective CO2 reservoir. Understanding the relationship between the micro morphology and the observed macro phenomena is even more crucial. Here we show Synchrotron based X-ray micro tomographic study of the morphological buildup of Sandstones. We present a numerical method to extract the pore sizes distribution of the porous structure directly, without approximation or complex calculation. We have also demonstrated its capability in predicting the capillary pressure curve in a mercury intrusion porosimetry (MIP) measurement. The method presented in this work can be directly applied to the morphological studies of heterogeneous systems in various research fields, ranging from Carbon Capture and Storage, and Enhanced Oil Recovery to environmental remediation in the vadose zone.
机译:大气中二氧化碳(CO 2 )的升高引起了人们对全球变暖进程的严重关注。地质隔离被认为是减轻全球气候变化破坏作​​用的最有前途的技术之一。广泛的长度尺度研究对于系统性评价准CO 2 油藏的地下地层很重要。了解微观形态与观察到的宏观现象之间的关系更为重要。在这里,我们展示了基于同步加速器的X射线显微断层摄影术,研究了砂岩的形态。我们提出了一种数值方法来直接提取多孔结构的孔径分布,而无需进行近似或复杂的计算。我们还证明了其在压汞法(MIP)测量中预测毛细管压力曲线的能力。这项工作中介绍的方法可以直接应用于碳捕集与封存,强化采油,渗流区环境修复等各个研究领域的异质系统形态研究。

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