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Analysis of physical properties and influencing factors of middle-rank coal reservoirs in China

机译:中国中级煤储层物理性质及影响因素分析

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Middle-rank coal mainly refers to bituminous coal with the vitrinite maximum reflectance (R-o,R-max) between 0.65% and 2.0%. Based on the results of a proximate analysis, maceral composition, high-pressure mercury intrusion porosimetry (MIP) experiments and isothermal adsorption experiments, combined with gas content and permeability derived from well test, the pore size distribution (PSD), adsorption characteristics and the evolutionary paths of middle-rank coal were analyzed, and the influencing factors of the gas-bearing property and permeability were discussed. The results indicated that as R-o,R-max increases, the porosity shows first decreasing and then increasing, with the minimum values reached when R-o,R-max = similar to 1.0%. The volume and specific surface area of the total pores have the same evolutionary paths with each class of pores, first decreasing and then increasing with the increases of R-o,R-max. The minimum value appears when R-o,R-max is between 1.2% and 1.3%. As R-o,R-max increases, V-L increases while P-L first increases and then decreases, the maximum value is again reached at near R-o,R-max = 1.3%. The gas content increases with the increases of R-o,R-max, first increasing and then decreasing with the increases of buried depth, and the buried depth at 950 m is the critical depth of gas content. There is a positive correlation between gas content and gas saturation; the permeability decreases with the increases of buried depth, and increases with the increases of coal reservoir porosity. Ground stress is the main controlling factor of reservoir permeability.
机译:中级煤主要是指烟灰煤的最大反射率(R-O,R-MAX)0.65%和2.0%。基于邻近分析,丙烯酸盐组合物,高压汞侵入孔隙瘤素(MIP)实验和等温吸附实验的结果,与煤气含量和渗透性源于井试验,孔径分布(PSD),吸附特性和渗透性分析了中级煤的进化路径,讨论了含气性和渗透性的影响因素。结果表明,作为R-O,R-Max增加,孔隙率显示第一减小,然后增加,随着R-O,R-MAX =与1.0%相似时达到最小值。总孔的体积和比表面积具有与每种孔相同的进化路径,首先减小,然后随着R-O的增加而增加,R-Max。 R-O,R-MAX在1.2%和1.3%之间出现最小值。作为R-O,R-Max增加,V-L增加,而P-L首先增加然后降低,则在接近R-O时再次达到最大值,R-MAX = 1.3%。煤气含量随着R-O,R-MAX的增加而增加,然后随着掩埋深度的增加而减小,并且950米处的掩埋深度是致态气体含量的临界深度。气体含量与气体饱和度之间存在正相关;随着埋地深度的增加,渗透率降低,随着煤储层孔隙率的增加而增加。地基应力是储层渗透性的主要控制因素。

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