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Structural Characteristics and Physical Properties of Tectonically Deformed Coals

机译:构造变形煤的结构特征和物理性质

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摘要

Different mechanisms of deformation could make different influence on inner structure and physical properties of tectonically deformed coal (TDC) reservoirs. This paper discusses the relationship between macromolecular structure and physical properties of the Huaibei-Huainan coal mine areas in southern North China. The macromolecular structure and pore characteristics are systematically investigated by using techniques such as X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM), electron paramagnetic resonance (EPR), nuclear magnetic resonance (NMR), and low-temperature nitrogen adsorption method. The results suggest that under the directional stress, basic structural units (BSU) arrangement is closer, and the orientation becomes stronger from brittle deformed coal to ductile deformed coal. Structural deformation directly influences the macromolecular structure of coal, which results in changes of pore structure. The nanoscale pores of the cataclastic coal structure caused by the brittle deformation are mainly mesopores, and the proportion of mesopores volume in ductile deformed coal diminishes rapidly. So the exploration and development potential of coalbed gas are good in reservoirs such as schistose structure coal, mortar structure coal and cataclastic structure coal. It also holds promise for a certain degree of brittle deformation and wrinkle structure coal of low ductile deformation or later superimposed by brittle deformation.
机译:不同的变形机制可能对构造变形煤(TDC)储层的内部结构和物理性质产生不同的影响。本文探讨了华北南部淮北煤矿区大分子结构与物性之间的关系。使用诸如X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM),电子顺磁共振(EPR),核磁共振(NMR)和低温等技术来系统地研究大分子结构和孔特征氮吸附法。结果表明,在方向性应力作用下,基本结构单元(BSU)排列更紧密,从脆性变形煤向延性变形煤的定向性增强。结构变形直接影响煤的大分子结构,从而导致孔隙结构的变化。脆性变形引起的碎裂煤结构的纳米孔主要是中孔,韧性变形煤中孔体积的比例迅速减小。因此,在片状构造煤,砂浆构造煤,碎裂构造煤等储层中,煤层气的勘探开发潜力良好。它还具有一定程度的脆性变形和低延展性变形或后来被脆性变形叠加的皱纹结构煤的前景。

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