Fusion of Differential Analysis of Volumetric Strain Method (Dilatometric Thermoporometry) and Mercury Intrusion Porosimetry Method for Pore Space Characterization in Carbonate Rocks

Karol Skowera
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Abstract

Abstract Many characteristics of capillary-porous materials, including limestones and dolomites, depend on the structure of the pore space of a given material, so the article attempts to accurately determine the geometric characteristics of pores and their ability to transport water. Much information on the pore structure of carbonate rocks can be obtained from literature studies. There is a lack of information on the use of full hysteresis dilatometric thermoporometry methods for this purpose, as well as the fusion of differential analysis of volumetric strain (DAVS) results with mercury intrusion porosimetry (MIP) results. The subject of the research presented in this article is the analysis of pore structure in carbonate rocks using the method of differential analysis of volumetric strain and mercury intrusion porosimetry. Based on the measurements made, the pore size, pore volume, content of empty pores and pores containing water incapable of phase transformation were analyzed. The geometry of mesopores of rock samples examined by differential analysis of volumetric strain and mercury intrusion porosimetry was compared. A fusion of the distribution of mesopores from the DAVS study with a part of the distribution of meso- and macropores obtained by the MIP study was performer.
体积应变法(膨胀热变形法)与压汞法在碳酸盐岩孔隙空间表征中的融合
包括灰岩和白云岩在内的许多毛细管多孔材料的特征取决于给定材料的孔隙空间结构,因此本文试图准确确定孔隙的几何特征及其输水能力。从文献研究中可以获得很多关于碳酸盐岩孔隙结构的信息。关于使用全滞后膨胀热测量方法来实现这一目的,以及将体积应变(DAVS)的差异分析结果与压汞孔隙度(MIP)的结果融合在一起的信息缺乏。本文的研究课题是用体积应变差分分析和压汞孔隙法分析碳酸盐岩孔隙结构。在此基础上,分析了孔隙尺寸、孔隙体积、空孔隙含量和不允许相变的含水孔隙。用体积应变差分分析和压汞孔隙法对岩石样品的介孔几何形态进行了比较。将DAVS研究所得的介孔分布与MIP研究所得的部分介孔和大孔分布进行了融合。
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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