[1] 朱春润,索科洛夫B. H. .成都粘土孔隙性的微观研究[J]. 地质灾害与环境保护,1994,5(3):37-47. (ZHU Chun-run, SOKOLOV B H. Microscopical Study of Porosity of Chengdu Clay[J]. Journal of Geological Hazards and Environment Preservation, 1994, 5(3):37-47. (in Chinese))
[2] 王 清,王剑平. 土孔隙的分形几何研究[J].岩土工程学报,2000,22(4):496-498. (WANG Qing, WANG Jian-ping. A Study of Fractal of Porosity in the Soils[J]. Journal of Geotechnical Engineering, 2000, 22(4): 496-498. (in Chinese))
[3] 刘龙波, 王旭辉. 由吸附等温线分析膨润土的分形孔隙[J].高校化学工程学报,2003, 17(5):591-595. (LIU Long-bo, WANG Xu-hui. Fractal Analysis of Bentonite Porosity by Using Nitrogen Adsorption Isotherms[J]. Journal of Chemical Engineering of Chinese Universities, 2003, 17(5): 591-595. (in Chinese))
[4] 齐吉琳, 谢定义. 孔隙分布曲线及其在土的结构性分析中的应用[J]. 西安公路交通大学学报,2000,20 (2): 6-8. (QI Ji-lin, XIE Ding-yi. The Pore Size Distribution Curve and Its Application in Soil Structure Analysis [J]. Journal of Xi’an Highway University, 2000, 20(2): 6-8. (in Chinese))
[5] 熊承仁,唐辉明,刘宝琛,等. 利用SEM照片获取土的孔隙结构参数[J]. 地球科学—中国地质大学学报,2007,32(3):415-419. (XIONG Cheng-ren, TANG Hui-ming, LIU Bao-chen, et al. Using SEM Photos to Gain the Pore Structural Parameters of Soil Samples[J]. Earth Science: Journal of China University of Geosciences, 2007, 32(3):415-419.(in Chinese))
[6] 柳艳华,张 宏,杜东菊,等. 多重分形在海积软土微观结构研究中的应用[J].水文地质工程地质,2006,33 (3):83-87. (LIU Yan-hua, ZHANG Hong, DU Dong-ju, et al. The Applications of Multi-fractal in Soil Microstructure [J]. Hydrogeology & Engineering Geology, 2006, 33(3):83-87.(in Chinese))
[7] 毛灵涛,薛 茹,安里千,等. 软土孔隙微观结构的分形研究[J].中国矿业大学学报,2005,34(5):6-10. (MAO Ling-tao, XUE Ru, AN Li-qian, et al. Fractal Approach on Soft Soil Porosity Microstructure [J]. China University of Mining & Technology, 2005, 34(5): 6-10.(in Chinese))
[8] 张季如,祝 杰,黄 丽,等. 固结条件下软黏土微观孔隙结构的演化及其分形描述[J].水利学报,2008,39(4): 394-400. (ZHANG Ji-ru, ZHU Jie, HUANG Li, et al. Evolution of Micro-pore Structure of Soft Clay and Its Fractal Features under Consolidation[J]. Journal of Hydraulic Engineering, 2008, 39(4): 394-400.(in Chinese))
[9] 王 清,王凤艳,肖树芳.土微观结构特征的定量研究及其在工程中的应用[J].成都理工学院学报,2001,28(2):148-153. (WANG Qing, WANG Feng-yan, XIAO Shu-fang. A Quantitative Study of the Microstructure Characteristics of Soil and Its Application to the Engineering [J]. Journal of Chengdu University of Technology, 2001, 28(2):148-153. (in Chinese))
[10]张先伟,孔令伟,郭爱国,等. 基于SEM和MIP试验结构性黏土压缩过程中微观孔隙的变化规律[J].岩石力学与工程学报,2012,31(2):406-412. (ZHANG Xian-wei, KONG Ling-wei, GUO Ai-guo, et al. Evolution of Microscopic Pore of Structured Clay in Compression Process Based on SEM and MIP Test [J]. Chinese Journal of Rock Mechanics and Engineering, 2012, 31(2): 406-412.(in Chinese))
[11]叶为民,钱丽鑫,陈 宝,等. 高压实高庙子膨润土的微观结构特征[J].同济大学学报(自然科学版),2009, 37(1):31-35. (YE Wei-ming, QIAN Li-xin, CHEN Bao, et al. Characteristics of Micro-structure of Densely Compacted Gaomiaozi Bentonite [J]. Journal of Tongji University (Natural Science), 2009, 37(1): 31-35. (in Chinese))
[12]孔令荣. 饱和软粘土的微结构特性及其微观弹塑性本构模型[D].上海:同济大学,2007. (KONG Ling-rong. Microstructural Behavior of Saturated Soft Clay and an Elasto-Plastic Constitutive Model Considering Microstructure[D]. Shanghai:Tongji University, 2007. (in Chinese))
[13]刘志彬,施 斌,王宝军,等.改性膨胀土微观孔隙定量研究[J].岩土工程学报,2004,26(4):526-530. (LIU Zhi- bin, SHI Bin, WANG Bao-jun, et al. Quantitative Research on Micropores of Modified Expansive Soils[J]. Journal of Geotechnical Engineering, 2004, 26(4): 526- 530.(in Chinese))
[14]田 华,张水昌,柳少波,等. 压汞法和气体吸附法研究富有机质页岩孔隙特征[J].石油学报,2012,33(3): 419-427. (TIAN Hua, ZHANG Shui-chang, LIU Shao-bo, et al. Determination of Organic-rich Shale Pore Features by Mercury Injection and Gas Adsorption Methods[J]. Acta Petrolei Sinica, 2012, 33(3): 419-427. (in Chinese))
[15]唐朝生,施 斌,王宝军,等. 基于SEM土体微观结构研究中的影响因素分析[J]. 岩土工程学报,2008,30 (4): 560-565. (TANG Chao-sheng, SHI Bin, WANG Bao-jun, et al. Factors Affecting Analysis of Soil Microstructure Using SEM[J]. Journal of Geotechnical Engineering, 2008, 30(4): 560-565.(in Chinese))
[16]SING K S W, EVERETT D H, Haul R A, et al. Reporting Physisorption Data for Gas/Solid Systems with Special Reference to the Determination of Surface Area and Porosity[J]. Pure and Applied Chemistry,1985,57 (4):603-619.
[17]BRUNAUER S, EMMETT P H, TELLER E. Adsorption of Gas in Multimolecular Layers[J]. Journal of the American Chemical Society,1938, 60(2): 309-319.
[18]BARRET E P, JOYNER L G, HALLENDA P P. The Determination of Pore Volume and Area Distributions in Porous Substances: Computations from Nitrogen Isotherms[J]. Journal of the American Chemical Society, 1951, 73(1): 373-380.
[19]HORVATH G, KAWAZOE K. Method for the Calculation of Effective Pore Size Distribution in Molecular Sieve Carbon[J]. Journal of Chemical Engineering of Japan, 1983, 16(6): 470-475.
[20]近藤精一,石川达雄,安部郁夫,等.吸附科学[M].李国希,译.北京:化学工业出版社,2010. (SEIICHI K, TATSUO I, IKUO A,et al. Adsorption Science[M].Translated by LI Guo-xi. Beijing: Chemical Industry Press, 2010. (in Chinese))
[21]SING K S W, EVERETT D H, HAUL R A W, et al. IUPAC Recommendations: Reporting Physisorption Data for Gas Solid Systems with Special Reference to the Determination of Surface Area and Porosity [M]. Handbook of Heterogeneous Catalysis, New York: Wiley and Sons, Inc. DOI: 10.1002/9783527610044.hetcat0065.
[22]谭罗荣,孔令伟.特殊岩土工程土质学[M].北京:科学出版社,2006. (TAN Luo-rong, KONG Ling-wei. Special Geotechnical Engineering Geology[M]. Beijing: Science Press,2006. (in Chinese))
[23]NEIMARK A V. Calculating Surface Fractal Dimensions of Adsorbents[J]. Adsorption Science and Technology, 1990, 7(4):210-219.