首页> 外文期刊>Journal of Petroleum Science & Engineering >Fractal characterization of pore structure for coal macrolithotypes in the Hancheng area, southeastern Ordos Basin, China
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Fractal characterization of pore structure for coal macrolithotypes in the Hancheng area, southeastern Ordos Basin, China

机译:汉城地区煤炭大碎石孔隙结构的分形表征,中国东南鄂尔多斯盆地

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Coalbed methane (CBM) reservoir pore structure is extremely complex and heterogeneous. With the fractal theory, the geometric and structural characteristics of the pore structure could be quantified. However, few studies have aimed to understand the fractal features of compositional-based macrolithotypes (bright, semibright, semi-dull, and dull coals). In this work, samples from the Hancheng area, in the southeastern Ordos Basin, China, were collected to investigate the fractal features of pore structures for macrolithotypes and calculate fractal dimensions (D-a1 and D-a2 for adsorption pores; D-s1 and D(s2)( )for seepage pores) based on low temperature N-2 adsorption and mercury intrusion data, respectively. Meanwhile, the impact of the fractal dimensions on the gas adsorption capacity and the seepage ability were discussed. The results demonstrate that when bright coal turns into dull coal, the vitrinite content, helium permeability, and gas adsorption capacity gradually decrease, while the coal density, mineral content, and ash yield increase. Since the D-a1 and D-s1 either deviate from the natural fractal dimension (2 < D < 3) or have a poor correlation with macrolithotypes, D(a2 )and D-s2 are regarded as the adsorption and seepage pore fractal dimensions, respectively. Of all the coal macrolithotypes, bright coal has the smallest BET specific surface area and micropore proportion, which results in the smallest fractal dimension D-a2, while for the dull coal, this is just the contrary; due to the higher mineral content, a higher D-a2 of the dull coal indicates a more complicated adsorption pore structure, and the coal with a larger Langmuir volume has a smaller D-a2. For the seepage pores, when the bright coal turns into dull coal, the macropore proportion gradually decreases, but the pore proportion tends toward equilibrium, and the mercury withdrawal efficiency increases; the dull coal has a larger D-s2 , indicating a more complex seepage pore structure than that in the bright coal. Due to the decreasing macropore proportion and mineral filling, D-s2 demonstrates an obvious negative correlation with the helium permeability and macropore proportion.
机译:煤层甲烷(CBM)储层孔隙结构非常复杂和异质。利用分形理论,可以量化孔隙结构的几何和结构特征。然而,很少有研究旨在了解组合物的大溴锂型(明亮,半纤维,半钝和暗煤)的分形特征。在这项工作中,来自中国东南鄂尔多斯盆地的汉城地区的样本被收集,研究了孔隙结构的分形特征,并计算了分形尺寸(D-A1和D-A2,用于吸附孔隙; D-S1和D(S2)()用于渗流孔隙的基于低温N-2吸附和汞入侵数据。同时,讨论了分形尺寸对气体吸附能力和渗流能力的影响。结果表明,当亮煤变成沉闷的煤炭,玻璃纤维含量,氦渗透性和气体吸附能力逐渐降低,而煤密度,矿物质含量和灰分产量增加。由于D-A1和D-S1偏离自然分形尺寸(2

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