THz Imaging to Map the Lateral Microporosity Distribution in Carbonate Rocks

S. Eichmann, Jacob Bouchard, Hooisweng Ow, D. Petkie, M. Poitzsch
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Abstract

Terahertz (THz) spectroscopy is a nondestructive tool used in many industries to analyze materials, including measuring the water content and the distribution of water in biological samples. THz time-domain spectroscopy (THz-TDS) measures the dielectric and structural properties of a sample by probing it with an ultrafast THz pulse and measuring the change in amplitude and phase. In this study, we demonstrate the use of THz-TDS imaging to quickly map lateral (i.e., two-dimensional) variations in microporosity (ϕμ) using the THz attenuation due to water in the pores after clearing the large pores via centrifugation. Three carbonate rock plugs with differing ϕ and pore-size distributions were subsampled for this study. Three water saturation states were produced for each sample: saturated, centrifuged, and dry. At each saturation state, the sample is weighed and imaged using THz-TDS to spatially map and measure ϕμ. The results show that for each sample the ϕμ obtained using THz-TDS imaging is in excellent agreement with that obtained from both mass balance and MICP. In addition, the THz-TDS maps show significant differences in the spatial distribution of the microporosity for samples having similar composition. This method provides a means to measure ϕ and ϕμ while mapping the spatial distribution of ϕμ toward improved petrophysical characterization of carbonate reservoir rocks.
太赫兹成像在碳酸盐岩横向微孔隙度分布中的应用
太赫兹(THz)光谱学是一种非破坏性的工具,在许多行业中用于分析材料,包括测量生物样品中的水含量和水的分布。太赫兹时域光谱学(THz- tds)是用超快太赫兹脉冲探测样品,测量样品振幅和相位的变化,从而测量样品的介电和结构特性。在这项研究中,我们展示了使用太赫兹- tds成像,通过离心清除大孔隙后,利用孔隙中水分引起的太赫兹衰减,快速绘制微孔隙度(ϕμ)的横向(即二维)变化。三个具有不同φ和孔径分布的碳酸盐岩岩芯进行了研究。每个样品产生三种水饱和状态:饱和,离心和干燥。在每个饱和状态下,对样品进行称重并使用太赫兹- tds成像以进行空间映射和测量;结果表明,对于每个样品,用太赫兹- tds成像得到的ϕμ与质量平衡和MICP得到的结果非常吻合。此外,在相似成分的样品中,THz-TDS图显示出微孔隙度的空间分布有显著差异。该方法提供了一种测量ϕ和ϕμ的方法,同时绘制了ϕμ的空间分布,以改善碳酸盐岩储层的岩石物理特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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