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Replicating carbonaceous vug in synthetic porous media

机译:在合成多孔介质中复制碳质孔眼

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This paper presents an alternative method of creating vuggy glass-bead core proxies, which can be used to investigate the effects of pore-scale features on carbonate petrophysical properties. Carbonates are complex rocks having a widespread variation in pore type, size, distribution, and porosity. With this method we can control vug shape, size, and position.Homogeneous glass bead core proxies are sintered using 1.0?mm diameter glass beads in a muffle furnace. Vugs are 3D–printed in plastic and used to make a mold in Play-Doh?; which is cast in gypsum cement and used as a placeholder during the sintering process. The gypsum vug dissolves during acid flood, leaving an empty space inside the glass matrix. Computed tomography (CT) scans are made of the acid washed vug space and compared to the 3D model.
机译:本文提出了一种替代的方法来创建蓬松的玻璃珠核心代理,可用于研究孔隙尺度特征对碳酸盐岩岩石物理性质的影响。碳酸盐是复杂的岩石,其孔隙类型,大小,分布和孔隙率都有很大的变化。通过这种方法,我们可以控制孔的形状,大小和位置。在马弗炉中使用直径为1.0?mm的玻璃珠来烧结均质的玻璃珠核心代理。容器用塑料3D打印,并用于在Play-Doh中制作模具。它由石膏水泥浇铸而成,并在烧结过程中用作占位符。石膏孔在酸溢期间溶解,在玻璃基质内部留有空白空间。计算机断层扫描(CT)扫描是对经过酸洗的缝隙空间进行的,并与3D模型进行比较。

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