基于非均质煤构造储层特征的渗透率敏感性数值模拟

IF 4.8 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Rui Wang, Kun Zhang, Guofu Li, Liangwei Xu
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引用次数: 0

摘要

储层敏感性与吸附/解吸动力学、孔隙-裂缝相互作用以及储层压力特征有关,在影响煤层气生产效率方面起着至关重要的作用。本研究通过从顶板到底板连续采样7个煤段,研究了非均质煤结构储层渗透率敏感性的变化。样品进行了低温N2和等温吸附CH4分析,并进行了显微观察实验。在此基础上,提出了渗透率敏感性评价模型。研究表明,该区3号煤层保持完整,主要由完整煤构造和碎裂煤构造组成。等温吸附实验和N2吸附分析表明,煤层中部的Langmuir VL (24.03 cm3/g)、比表面积和中孔体积最大。碎裂煤受构造变形的影响,形成的微孔比完整煤多。在纵向上,煤层宏观裂缝和微观裂缝表现出复杂的差异,包括裂缝的孔径、频率、间距、连通性和矿化程度的差异。该模型还考虑了气体解吸过程中煤基质的有效应力和体积变化,模拟了渗透率敏感性的变化。结果表明,煤层中部应力敏感性最显著,渗透率损失率最高。研究认为,高河及邻近煤田煤层气储层的增产和瓦斯突出的防治应以煤层中部为重点。该研究对煤层气生产设计和开发风险评估具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modeling of Permeability Sensitivities Based on Characteristics of Heterogeneous Coal Structure Reservoirs

Reservoir sensitivities play a crucial role in affecting the production efficiency of coalbed methane, relating to adsorption/desorption dynamics, pore–fracture interactions, and pressure characteristics within the reservoir. This study examined changes in permeability sensitivity within a heterogeneous coal structure reservoir by continuously sampling seven coal sections from roof to floor. The samples underwent low-temperature N2 and isothermal adsorption analysis of CH4, as well as microscopic observation experiments. Based on the results, a permeability sensitivity evaluation model was proposed. The study revealed that the No. 3 coal seam in the area maintained its integrity, primarily consisting of intact and cataclastic coal structures. The isothermal adsorption experiments and N2 adsorption analysis indicated that the highest Langmuir VL (24.03 cm3/g), specific surface area, and mesopore volumes were found in the middle part of the coal seam. Cataclastic coal, influenced by tectonic deformations, formed more micropores than the intact coal. The coal seam exhibited complex vertical variations in macroscopic and microscopic fractures, including differences in aperture, frequency, spacing, connectivity, and mineralization. The model also simulated changes in permeability sensitivities, considering effective stress and volumetric changes in the coal matrix during gas desorption. It was found that the middle part of the coal seam exhibited the most significant stress sensitivity and the highest permeability loss ratio. The study concludes that attention should be focused on the middle part of the coal seam in the Gaohe and adjacent coal fields for the stimulation of the coalbed methane (CBM) reservoir and prevention of gas outburst. This research is instrumental in determining CBM production design and evaluating development risks.

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来源期刊
Natural Resources Research
Natural Resources Research Environmental Science-General Environmental Science
CiteScore
11.90
自引率
11.10%
发文量
151
期刊介绍: This journal publishes quantitative studies of natural (mainly but not limited to mineral) resources exploration, evaluation and exploitation, including environmental and risk-related aspects. Typical articles use geoscientific data or analyses to assess, test, or compare resource-related aspects. NRR covers a wide variety of resources including minerals, coal, hydrocarbon, geothermal, water, and vegetation. Case studies are welcome.
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