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构造煤等效结构模型的建立及其对瓦斯运移的若干启示

Establishment of the equivalent structural model for the tectonic coal and some implications for the methane migration.

作者信息

Dong Jun, Cheng Yuanping, Wang Liang, Guo Pinkun

机构信息

College of Safety Science and Engineering, Nanjing Tech University Nanjing 211816 China.

Key Laboratory of Gas and Fire Control for Coal Mines (China University of Mining and Technology), Ministry of Education Xuzhou 221116 China

出版信息

RSC Adv. 2020 Mar 6;10(17):9791-9797. doi: 10.1039/c9ra10304j.

Abstract

The establishment of the equivalent structural model (ESM) is the foundation to simplify the structures of the coal matrix and fractures for the study of methane migration. The ESM of the intact coal has been proposed and widely used by many scholars, but the ESM of the tectonic coal has not been found in the literature. The application of the ESM of the intact coal to the tectonic coal is not reasonable for the study of the methane migration properties, so the establishment of the ESM for the tectonic coal is necessary and meaningful. In this study, a tectonic coal specimen was remodeled from collected coal powders, and methane permeability tests were conducted. Then the ESM of the tectonic coal was established by analyzing the fracture structure. The results show that the tectonic coal can be idealized as a model containing a cubic matrix with square section fractures located at the twelve edges of the matrix. Because of the variation of the ESM, the permeability and the fracture porosity has a square relation for the tectonic coal, rather than the cubic relation for the intact coal. The matrix shape factor of the tectonic coal has also been proposed, which has a value of 480 /7 and is much smaller than that of the intact coal.

摘要

等效结构模型(ESM)的建立是简化煤基质和裂隙结构以研究甲烷运移的基础。完整煤体的等效结构模型已被许多学者提出并广泛应用,但文献中尚未发现构造煤的等效结构模型。将完整煤体的等效结构模型应用于构造煤来研究甲烷运移特性是不合理的,因此建立构造煤的等效结构模型是必要且有意义的。在本研究中,由采集的煤粉重塑了构造煤试样,并进行了甲烷渗透率测试。然后通过分析裂隙结构建立了构造煤的等效结构模型。结果表明,构造煤可理想化为一个包含立方基质的模型,在基质的十二条棱边处有方形截面的裂隙。由于等效结构模型的变化,构造煤的渗透率与裂隙孔隙率呈平方关系,而不是完整煤体的立方关系。还提出了构造煤的基质形状因子,其值为480 /7 ,远小于完整煤体的基质形状因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41c7/9050231/19db9a653d83/c9ra10304j-f1.jpg

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