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贵州省龙潭组煤系岩石力学特征分析及评价体系的建立

Analysis of Rock Mechanical Characteristics and Establishment of an Evaluation System for Coal Measures in the Longtan Formation, Guizhou Province.

作者信息

Liang Yu, Cao Liwen, Sang Shuxun, Zhang Yudong

机构信息

School of Resources and Geosciences, China University of Mining and Technology, Xuzhou, Jiangsu 221116, China.

Carbon Neutrality Institute, Jiangsu Key Laboratory of Coal-based Greenhouse Gas Control and Utilization, and School of Resources and Geosciences, China University of Mining and Technology, Xuzhou, Jiangsu 221008, China.

出版信息

ACS Omega. 2024 Aug 1;9(32):34380-34396. doi: 10.1021/acsomega.4c01643. eCollection 2024 Aug 13.

Abstract

The mechanical properties of coal measure rocks and their evaluation significantly impact the process and efficacy of coal measure exploration and development. This study focuses on the Guizhou Longtan Formation coal measure. The mechanical and fracturing characteristics of coal measure rock samples are analyzed via well coring, geophysical logging, and indoor experiments. Additionally, predictive models for rock mechanical parameters are developed, and an evaluation system for the Longtan Formation coal measure rock mass is established. The findings are as follows: (1) Coal measure rocks in Guizhou's Longtan Formation exhibit a relatively low elastic modulus and tensile strength, but a substantial variation in compressive strength. The triaxial compressive strength, elastic modulus, and residual strength increase nonlinearly with increasing confining pressure. As the confining pressure increases, the failure mode of the mudstone and siltstone transitions from primarily splitting failure to shearing failure. (2) Strong correlations are calculated between logging parameters and rock mechanical parameters and are used to construct three regression prediction models, yielding an average prediction accuracy of approximately 85% for rock mechanical properties. (3) Considering the rock mechanical properties, rock mass structure and stratigraphic characteristics, and the occurrence environment related to the characteristics of rock mass affecting coal measure gas development, eight evaluation indices are selected. The analytic hierarchy process-entropy weighting method is used to determine the weights of the comprehensive evaluation indices, and a coal measure rock mass evaluation system is established by utilizing gray clustering analysis. The evaluation results categorize the mudstone group (mudstone and silty mudstone) as Classes III-IV, the fine sandstone group as Classes I and II, and the siltstone group (muddy siltstone and siltstone) as Classes II and III. A comparative analysis with fuzzy comprehensive evaluation results and extenics theory evaluation results demonstrated a high level of consistency. These findings benefit coal measure rock mechanics classification and quantitative research on rock mechanics properties, providing a solid foundation for efficient coal measure gas exploration and development.

摘要

煤系岩石的力学性质及其评价对煤系勘探开发的过程和效果有着显著影响。本研究聚焦于贵州龙潭组煤系。通过钻孔取芯、地球物理测井和室内实验,分析了煤系岩石样品的力学和压裂特性。此外,建立了岩石力学参数预测模型,并构建了龙潭组煤系岩体评价体系。研究结果如下:(1)贵州龙潭组煤系岩石表现出相对较低的弹性模量和抗拉强度,但抗压强度变化较大。三轴抗压强度、弹性模量和残余强度随围压增加呈非线性增加。随着围压增加,泥岩和粉砂岩的破坏模式从主要的劈裂破坏转变为剪切破坏。(2)计算了测井参数与岩石力学参数之间的强相关性,并用于构建三个回归预测模型,岩石力学性质的平均预测准确率约为85%。(3)考虑岩石力学性质、岩体结构和地层特征以及与影响煤系瓦斯发育的岩体特征相关的赋存环境,选取了八个评价指标。采用层次分析法 - 熵权法确定综合评价指标的权重,并利用灰色聚类分析建立了煤系岩体评价体系。评价结果将泥岩组(泥岩和粉砂质泥岩)归类为Ⅲ - Ⅳ类,细砂岩组归类为Ⅰ - Ⅱ类,粉砂岩组(泥质粉砂岩和粉砂岩)归类为Ⅱ - Ⅲ类。与模糊综合评价结果和可拓学理论评价结果的对比分析表明具有高度一致性。这些研究结果有助于煤系岩石力学分类和岩石力学性质的定量研究,为高效的煤系瓦斯勘探开发提供了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f24/11325512/e3a2c53a057f/ao4c01643_0001.jpg

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