[1]陈喜恩,赵龙,王兆丰,等.液态CO2相变致裂机理及应用技术研究[J].煤炭工程,2016,48(09):95-97+101.
CHEN Xi'en, ZHAO Long, WANG Zhaofeng, et al. Mechanism and application technology of liquid CO2phase-transforming fracturing [J]. Coal Engineering,2016,48(09):95-97+101.
[2]张迪,丰程涛,李鹏,等.煤粒瓦斯解吸-扩散数值模型适用性及参数敏感性研究[J].煤炭工程,2024,56(10):281-288.
ZHANG Di, FENG Chengtao, LI Peng, et al. Applicability and parameter sensitivity of gas desorption-diffusion model in coal particles [J]. Coal Engineering,2024,56(10):281-288.
[3]李鹏,王衍海,周爱桃,等.煤层瓦斯抽采主控因素演化机制研究[J].煤炭工程,2024,56(08):165-171.
LI Peng, WANG Yanhai, ZHOU Aitao, et al. Evolution mechanism of main control factors for coalbed methane extraction [J]. Coal Engineering,2024,56(08):165-171.
[4]江泽标,彭鑫,韦善阳,等.基于氮吸附、压汞联合试验的CO2致裂对煤岩孔隙的影响[J].安全与环境学报,2021,21(01):101-108.
JIANG Zebiao,PENG Xin,WEI Shanyang,et al. Influence of CO2 cracking on the coal and rock pore based on the nitrogen adsorption and mercury press combined experiment [J]. Journal of Safety and Environment,2021,21(01):101-108.
[5]彭鑫,江泽标,谢雄刚,等.CO2致裂对煤孔隙吸解特性与分形特征影响研究[J].中国安全科学学报,2019,29(07):110-116.
PENG Xin, JIANG Zebiao, XIE Xionggang, et al. Study on the effect of CO2 fracturing on the absorption and dissolution characteristics and fractal features of coal pores[J]. Chinese Journal of Safety Science, 2019,29(07):110-116.
[6] THOMME S M,KANEK O K,NEIMARK A V,et al. Physisorption of gases,with special reference to the evaluation of surface area and pore size distribution(IUPAC Technical Report)[J]. Pure and Applied Chemistry,2015,87(9/10):1 051–1 069.
[7] 刘长江,桑树勋,张 琨,等. 压汞法研究煤孔隙的适用性与局限性探讨 [J]. 实验室研究与探索,2019 ,38(3) :11–15.
LIU Changjiang, SAN Shuxun, ZHANG Kun, et al. Exploring the applicability and limitations of piezomercury method to study coal porosity [J]. Laboratory Research and Exploration, 2019 , 38(3): 11-15.
[8] 刘彦伟,张 帅,左伟芹,等. 典型软硬煤全孔径孔隙结构差异性研究[J]. 煤炭科学技术,2021,49(10):98–106.
LIU Yanwei, ZHANG Shuai, ZUO Weixin, et al. Study on the variability of full pore size pore structure of typical soft and hard coals[J]. Coal Science and Technology, 2021, 49(10):98-106.
[9] 李 阳,张玉贵,张 浪,等. 基于压汞、低温 N2 吸附和 CO2 吸附的构造煤孔隙结构表征[J]. 煤炭学报,2019,44(4):220–228.
LI Yang, ZHANG Yugui, ZHANG Lang, et al. Characterisation of tectonic coal pore structure based on mercuric pressure, low-temperature N2 adsorption and CO2 adsorption[J]. Journal of Coal, 2019, 44(4):220-228.
[10] 蒋静宇,程远平,张 硕. 低阶煤孔隙结构定量表征及瓦斯吸附放散特性[J]. 煤炭学报,2021,46(10):3 221–3 233.
JIANG Jingyu, CHENG Yuanping, ZHANG Shuo. Quantitative characterisation of pore structure and gas adsorption and dissipation characteristics of low rank coal[J]. Journal of Coal Science, 2021, 46(10):3 221-3 233.
[11] 陈燕燕,邹才能,Maria Mastalerz等.页岩微观孔隙演化及分形特征研究[J].天然气地球科学,2015,26(09):1646-1656.
Chen Yanyan,Zou Cai,Maria Mastalerz et al. Microporosity evolution and fractal characterisation of shale[J]. Natural Gas Geoscience,2015,26(09):1646-1656.
[12] 陈继福.底抽巷穿层钻孔液态CO2相变致裂增透技术研究[J].煤炭工程,2020,52(03):62-65.
Chen Jifu. Research on liquid CO2 phase change fracturing and penetration enhancement technology for drilling through layer in bottom drawdown[J]. Coal Engineering,2020,52(03):62-65.
[13] Drake L C, Ritter H L. Macropore-size distributions in some typical porous substances[J]. Industrial & Engineering Chemistry Analytical Edition, 1945, 17(12): 787-791.
[14] 秦雷,王平,翟成,李树刚,林海飞,龙航.基于氮气吸附法和压汞法低温液氮冻结煤体分形特征研究[J].采矿与安全工程学报:1-12[2022-05-14].
QIN Lei, WANG Ping, ZHAI Cheng, LI Shugang, LIN Haifei, LONG Hang. Study on fractal characteristics of coal body frozen by low temperature liquid nitrogen based on nitrogen adsorption method and mercury pressure method[J]. Journal of Mining and Safety Engineering:1-12[2022-05-14].
[15] 郭勇义,高亚斌,曹敬等.基于修正压汞法的不同瓦斯含量煤样孔隙结构及分形特征研究[J].中国矿业大学学报,2023,52(6):1075-1083.
GUO Yongyi,GAO Yabin,CAO Jing et al. Study on pore structure and fractal characteristics of coal samples with different gas contents based on modified mercuric pressure method[J]. Journal of China University of Mining and Technology,2023,52(6):1075-1083.
[16] Guo H.Cheng Y,Wang L,Lu Qing,Jin K.Experimental study on the effect of moisture on low-rank coal adsorption characteristics[J].Journal of Natura l Gas Science and Engineering,2015,24:245-251.
[17] Pyun S,Rhee C.An investigation of fractal characteristics of mesoporous carbon electrodes with varios pore structures[J].Electrochimica Acta,2004,49 (24):4171-4180.
[18] Thommes M,kanko K,Neimark A V,Olivier J P,Reinoso F R,Rouquerol J, Sing S W.Physisortion of gases,with special reference to the evaluation of surface area and pore size distribution (IUPAC Technical Report)[J].Pure and Applied Chemistry,2015,87(9-10):1051-1069.
[19] PFEIFERPER P,AVNIR D.Chemistry in noninteger dimensions between two and three.I.Fractal theory of heterogeneous surfaces[J].The Journal of Chemical Physics,1983,79(7):3558-3565.
[20] Angulo R F, Alvarado V, Gonzalez H. Fractal Dimensions from Mercury Intrusion Capillary Tests[C]//SPE Latin America Petroleum Engineering Conference, Caracas, 1992. |