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有机质页岩孔隙分形模型的适用性研究

Suitability study on fractal model of organic shale pore

  • 摘要: 为了深入研究分形理论模型计算不同尺度孔隙分形维数的适用性,以焦页1井龙马溪组页岩与慈页1井牛蹄塘组页岩的钻井岩心样品为研究对象,采用CO2和N2等温吸附试验,获得了2组页岩微孔与介孔的吸附数据,并分别结合微孔分形模型和FHH分形模型计算了微孔与介孔的分形维数,讨论了2种模型的有效性。研究结果表明:微孔分形模型适用于计算CO2吸附数据,可有效表征页岩微孔的分形维数;而选FHH分形模型适用于计算N2吸附的高压段数据,可有效表征页岩介孔的分形维数。微孔与介孔可具有不同的分形结构,页岩孔隙结构的评价应综合考虑两类孔隙的分形维数。

     

    Abstract: In order to deeply study the adaptability of the fractal theory model to calculate the fractal dimension of the different size pores, with the drilling rock core samples of the shale in Longmaxi Formation from Jiaoye No.1 Well and the shale in Niutitang Formation from Ciye No.1 Well as the study objects, the CO2 and N2 isotherm adsorption tests were applied to get the micropore and mesopore adsorption data of the shale from the two formations. And individually to combine with the micropore fractal model and the FHH fractal model, the micropore and mesopore fractal dimensions were calculated. The efficiency of the two models was discussed. The study results showed that the micropore fractal model was suitable to calculate CO2 adsorption data and could effectively characterize the fractal dimension of micropore in shales. The FHH fractal model would be suitable to calculate the high pressure sectional data of the N2 adsorption and could effectively characterize the mesopore fractal dimension of shales. The micropore and mesopore could have different fractal structures. The evaluation of the shale pore structure should comprehensively consider the fractal dimensions of two type pores.

     

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