Static dissolution-induced 3D pore network modification and its impact on critical pore attributes of carbonate rocks é��æ��æ�¡ä»¶ä¸�ç¢³é ¸ç��岩ä¸�ç»´å­�é��ç½�ç»�ç��溶è��æ�¹é� å��å ¶å¯¹å­�é��ç»�æ��ç��å½±å��

Andriamihaja, S. and Padmanabhan, E. and Ben-Awuah, J. and Sokkalingam, R. (2019) Static dissolution-induced 3D pore network modification and its impact on critical pore attributes of carbonate rocks é��æ��æ�¡ä»¶ä¸�ç¢³é ¸ç��岩ä¸�ç»´å­�é��ç½�ç»�ç��溶è��æ�¹é� å��å ¶å¯¹å­�é��ç»�æ��ç��å½±å��. Shiyou Kantan Yu Kaifa/Petroleum Exploration and Development, 46 (2). pp. 361-369. ISSN 10000747

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Abstract

To determine the effect of dissolution on pore network development in carbonate rocks, dissolution experiments, X-Ray microtomography, and thin section analysis were conducted on argillaceous limestone and grain limestone samples at different temperatures and constant pH, HCl concentration. The relationship between Ca2+ concentration and time was revealed through the experiments; pore size distribution before and after dissolution indicate that there is no correlation between the temperature and pore size variation, but pore size variation in grain limestone is more significant, indicating that the variation is mainly controlled by the heterogeneity of the rock itself (initial porosity and permeability) and the abundance of unstable minerals (related to crystal shape, size and mineral type). At different temperatures, the two kinds of carbonate rocks had very small variation in pore throat radius from 0.003 mm to 0.040 mm, which is 1.3 to 3.5 times more, 1.7 on average of the original pore throat radius. Their pore throat length varied from 0.05 mm to 0.35 mm. The minor changes in the pore throat radius, length and connectivity brought big changes to permeability of up to 1 000�10-3 μm2. © 2019, The Editorial Board of Petroleum Exploration and Development. All right reserved.

Item Type: Article
Additional Information: cited By 8
Uncontrolled Keywords: Carbonates; Carbonation; Chlorine compounds; Clay minerals; Dissolution; Lime; Limestone; Pore structure; Tomography; X rays, Acidizing; Argillaceous limestone; Carbonate rock; Pore networks; X-ray micro tomographies, Pore size
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 10 Nov 2023 03:26
Last Modified: 10 Nov 2023 03:26
URI: https://khub.utp.edu.my/scholars/id/eprint/11627

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