首页> 外文期刊>Arabian journal of geosciences >Multifractal analysis and evolution rules of micro-fractures in brittle tectonically deformed coals of Yangquan mining area
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Multifractal analysis and evolution rules of micro-fractures in brittle tectonically deformed coals of Yangquan mining area

机译:阳泉矿区脆性构造变形煤中微骨折的多重分析及演化规律

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摘要

Micro-fractures act as a bridge between pores and macro-fractures and directly affect the permeability of coal reservoirs. Understanding the micro-fracture heterogeneity and its relationships with deformation can enrich our knowledge on the gas transportation behavior of tectonically deformed coals. The multifractal theory was applied to characterize the variations and heterogeneity of micro-fractures in high-rank brittle tectonically deformed coals. The results indicated that the micro-fractures exhibit multifractal behavior at epsilon = 1-1/16 (epsilon being the size of the boxes considered), and that the obtained generalized dimension spectra D-q-q, multifractal singularity spectrum f(alpha)-alpha, and characteristic parameters, including the capacity dimension D-0, information dimension D-1, correlation dimension D-2, D-1/D-0, the width of multifractal spectrum Delta alpha, and the difference of the fractal dimensions Delta f(alpha), can be applied to accurately describe the differences and variations of the micro-fracture distributions and scales. Moreover, the deformation has a significant influence on the variation and heterogeneity of micro-fracture distributions and scales, as demonstrated by the change rules of the characteristic parameters. The D-1, D-2, and D-1/D-0 increased with the increase of deformation degree, while Delta alpha and Delta f(alpha) decreased. Consequently, the deformation leads to higher density, more uniform distributions, and more dispersed and complex scales in the micro-fractures of brittle tectonically deformed coals, and controls the permeability of coal reservoirs.
机译:微骨折作为毛孔和宏观骨折之间的桥梁,直接影响煤储层的渗透性。了解微骨折异质性及其与变形的关系可以丰富我们对构造变形煤的气体运输行为的知识。应用多重术理论以表征高级脆性细胞源性变形煤中微骨折的变化和异质性。结果表明,微骨折表现出ε= 1-1 / 16的多重行为(ε是所考虑的盒子的尺寸),并且所获得的广义尺寸谱DQQ,多分术奇异性谱F(α) - α,以及特征参数,包括容量尺寸D-0,信息尺寸D-1,相关尺寸D-2,D-1 / D-0,多术谱Δα的宽度,以及分形尺寸Delta F的差异(alpha ),可以应用于准确描述微骨折分布和尺度的差异和变化。此外,变形对微断裂分布和尺度的变化和异质性具有显着影响,如特征参数的变化规则所证明的。 D-1,D-2和D-1 / D-0随着变形程度的增加而增加,而Delta alpha和Delta F(alpha)降低。因此,变形导致更高的密度,更均匀的分布,更均匀的分布,更均匀的分散和复杂的鳞片在脆性细胞源性变形煤的微骨折中,并控制煤储层的渗透性。

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