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发表论文
[1] Xiukuo Sun, Shouding Li, Xiao Li, Guanfang Li, Bo Zheng, Tianqiao Mao. The Mechanical Properties and Fracture Characteristics of Shale Layered Samples from the Lucaogou Formation Considering Natural Crack and Mineral Distribution. MATERIALS[J]. 2023, 16: https://doaj.org/article/a569a32519244cc4b32151bb25f42352.
[2] Guanfang Li, Zhijun Jin, Xiao Li, Kouqi Liu, Wencheng Yang, Maotian Qiao, Tongtong Zhou, Xiukuo Sun. Experimental study on mechanical properties and fracture characteristics of shale layered samples with different mineral components under cyclic loading. MARINE AND PETROLEUM GEOLOGY. 2023, 150: http://dx.doi.org/10.1016/j.marpetgeo.2023.106114.
[3] Guo, Peng, Li, Xiao, Li, Shouding, He, Jianming, Mao, Tianqiao, Hu, Yanzhi, Zheng, Bo. Experimental Investigation of Simultaneous and Asynchronous Hydraulic Fracture Growth from Multiple Perforations in Shale Considering Stress Anisotropy. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2023, http://dx.doi.org/10.1007/s00603-023-03499-6.
[4] Li, Guanfang, Jin, Zhijun, Li, Xiao, Zhang, Pengyuan, Liang, Xinping, Zhang, Rui, Li, Changrong, Wang, Duo, Hu, Yanzhi. Shallow burial shale gas accumulation pattern of the Wufeng-Longmaxi Formations in the northern Guizhou area, western Yangtze platform. GEOENERGY SCIENCE AND ENGINEERING[J]. 2023, 225: http://dx.doi.org/10.1016/j.geoen.2023.211683.
[5] Wu, Yanfang, Li, Xiao, Zhang, Luqing, Zhou, Jian, Mao, Tianqiao, Li, Mingtao. Analysis on Spatial Variability of SRM Based on Real-Time CT and the DIC Method Under Uniaxial Loading. FRONTIERS IN PHYSICS[J]. 2022, 10: http://dx.doi.org/10.3389/fphy.2022.789068.
[6] He, Jianming, Li, Tengfei, Zheng, Bo, Mao, Tianqiao, Wu, Yanfang, Li, Shouding, Li, Xiao. Effect of calcite veins on the mechanical behavior and fracture propagation of carboniferous limestone. ENGINEERING GEOLOGY[J]. 2022, 300: http://dx.doi.org/10.1016/j.enggeo.2022.106592.
[7] Zhou, Zhongming, Li, Shouding, Li, Xiao, Chen, Dong, Zheng, Bo. Evaluation of rock-bit interaction test under simulated ultra-deep well conditions based on similarity principle. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2022, 211: http://dx.doi.org/10.1016/j.petrol.2022.110130.
[8] Li, Shouding, Sun, Yiming, Lu, Cheng, Chen, Weichang, Liu, Shimin, Chen, Lin, Li, Xiao. A Thermodynamic Method for the Estimation of Free Gas Proportion in Depressurization Production of Natural Gas Hydrate. FRONTIERS IN EARTH SCIENCE[J]. 2022, 10: http://dx.doi.org/10.3389/feart.2022.859111.
[9] Zhang, Qian, Deng, Hang, Dong, Yanhui, Molins, Sergi, Li, Xiao, Steefel, Carl. Investigation of Coupled Processes in Fractures and the Bordering Matrix via a Micro-Continuum Reactive Transport Model. WATER RESOURCES RESEARCH[J]. 2022, 58(2): http://dx.doi.org/10.1029/2021WR030578.
[10] He, Jianming, Zhang, Zhaobin, Li, Guanfang, Huo, Jian, Li, Shouding, Li, Xiao. Modeling study on supercritical CO2 fracturing applicability and capacity to stimulate reservoirs with different permeabilities. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2022, 213: http://dx.doi.org/10.1016/j.petrol.2022.110427.
[11] Li, Lihui, Huang, Beixiu, Tan, Yufang, Li, Xiao, Ranjith, P G. Using micro-indentation to determine the elastic modulus of shale laminae and its implication: Cross-scale correlation of elastic modulus of mineral and rock. MARINE AND PETROLEUM GEOLOGY[J]. 2022, 143: http://dx.doi.org/10.1016/j.marpetgeo.2022.105740.
[12] Duan, Yongting, Feng, XiaTing, Li, Xiao, Yang, Baicun. Mesoscopic damage mechanism and a constitutive model of shale using in-situ X-ray CT device. ENGINEERING FRACTURE MECHANICS[J]. 2022, 269: http://dx.doi.org/10.1016/j.engfracmech.2022.108576.
[13] He, Jianming, Afolagboye, Lekan Olatayo, Zheng, Bo, Mao, Tianqiao, Wu, Yanfang, Li, Guanfang, Li, Shouding, Li, Xiao. Effect of Strain Rate on Anisotropic Mechanical Behavior of the Shale Under Uniaxial Compression Conditions. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2022, 55(8): 5297-5305, http://dx.doi.org/10.1007/s00603-022-02892-x.
[14] Yanzhi Hu, Xiao Li, Zhaobin Zhang, Jianming He, Guanfang Li. Numerical modeling of complex hydraulic fracture networks based on the discontinuous deformation analysis (DDA) method. ENERGY EXPLORATION & EXPLOITATION[J]. 2021, 39(5): 1640-1665, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000680707300001.
[15] Sun XiuKuo, Li Xiao, Mao TianQiao, Zheng Bo, Wu YanFang, Li GuanFang. Fracture evolution analysis of soil-rock mixture in contrast with soil by CT scanning under uniaxial compressive conditions. SCIENCE CHINA-TECHNOLOGICAL SCIENCES[J]. 2021, 64(12): 2771-2780, [16] Guo, Peng, Li, Xiao, Li, Shouding, Yang, Wencheng, Wu, Yanfang, Li, Guanfang. Quantitative Analysis of Anisotropy Effect on Hydrofracturing Efficiency and Process in Shale Using X-Ray Computed Tomography and Acoustic Emission. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2021, 54(11): 5715-5730, http://dx.doi.org/10.1007/s00603-021-02589-7.
[17] Huang, Beixiu, Li, Lihui, Tan, Yufang, Hu, Ruilin, Li, Xiao. Investigating the Meso-Mechanical Anisotropy and Fracture Surface Roughness of Continental Shale. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH[J]. 2020, 125(8): https://www.webofscience.com/wos/woscc/full-record/WOS:000582684200004.
[18] He, Jianming, Li, Xiao, Yin, Chao, Zhang, Yixiang, Lin, Chong. Propagation and characterization of the micro cracks induced by hydraulic fracturing in shale. ENERGY[J]. 2020, 191: http://dx.doi.org/10.1016/j.energy.2019.116449.
[19] Sun, Xiukuo, Li, Xiao, Zheng, Bo, He, Jianming, Mao, Tianqiao. Study on the progressive fracturing in soil and rock mixture under uniaxial compression conditions by CT scanning. ENGINEERING GEOLOGY[J]. 2020, 279: http://dx.doi.org/10.1016/j.enggeo.2020.105884.
[20] He, Jianming, Zhang, Yixiang, Yin, Chao, Li, Xiao. Hydraulic Fracturing Behavior in Shale with Water and Supercritical CO2 under Triaxial Compression. GEOFLUIDS[J]. 2020, 2020: [21] Huang, Tianming, Li, Zhenbin, Mayer, Bernhard, Nightingale, Michael, Li, Xiao, Li, Guanfang, Long, Yin, Pang, Zhonghe. Identification of Geochemical Processes During Hydraulic Fracturing of a Shale Gas Reservoir: A Controlled Field and Laboratory Water-Rock Interaction Experiment. GEOPHYSICAL RESEARCH LETTERS[J]. 2020, 47(20): https://www.webofscience.com/wos/woscc/full-record/WOS:000586497000019.
[22] Hu, Yanzhi, Li, Xiao, Zhang, Zhaobin, He, Jianming, Li, Guanfang. Numerical investigation on the hydraulic stimulation of naturally fractured Longmaxi shale reservoirs using an extended discontinuous deformation analysis (DDA) method. GEOMECHANICS AND GEOPHYSICS FOR GEO-ENERGY AND GEO-RESOURCES[J]. 2020, 6(4): http://dx.doi.org/10.1007/s40948-020-00195-5.
[23] Duan, Y T, Li, X, Ranjith, P G, Wu, Y F. An investigation of the evolution of the internal structures and failure modes of Longmaxi shale using novel X-ray microscopy. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2020, 184: http://dx.doi.org/10.1016/j.petrol.2019.106479.
[24] Zhang, Yixiang, He, Jianming, Li, Xiao, Lin, Chong. Experimental study on the supercritical CO2 fracturing of shale considering anisotropic effects. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2019, 173: 932-940, http://ir.iggcas.ac.cn/handle/132A11/90200.
[25] Xiao Li. Experimental invetigation on the fractures induced by hydraulic fracturing using freshwater and supercritical CO2 in shale under uniaxial stress. Rock Mechanics and Rock Engineering. 2019, [26] Duan, Yongting, Li, Xiao, Zheng, Bo, He, Jianming, Hao, Jin. Cracking Evolution and Failure Characteristics of Longmaxi Shale Under Uniaxial Compression Using Real-Time Computed Tomography Scanning. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2019, 52(9): 3003-3015, [27] Zhao, Zhiheng, Li, Xiao, He, Jianming, Mao, Tianqiao, Li, Guanfang, Zheng, Bo. Investigation of fracture propagation characteristics caused by hydraulic fracturing in naturally fractured continental shale. JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING[J]. 2018, 53: 276-283, http://dx.doi.org/10.1016/j.jngse.2018.02.022.
[28] Lin, Chong, He, Jianming, Li, Xiao. Width Evolution of the Hydraulic Fractures in Different Reservoir Rocks. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2018, 51(5): 1621-1627, https://www.webofscience.com/wos/woscc/full-record/WOS:000431174000019.
[29] Cheng, Cheng, Li, Xiao. Cyclic Experimental Studies on Damage Evolution Behaviors of Shale Dependent on Structural Orientations and Confining Pressures. ENERGIES[J]. 2018, 11(1): https://doaj.org/article/5b12dbcec98648b29c6197f68f5683e5.
[30] Zhao, Zhiheng, Li, Xiao, He, Jianming, Mao, Tianqiao, Zheng, Bo, Li, Guanfang. A laboratory investigation of fracture propagation induced by supercritical carbon dioxide fracturing in continental shale with interbeds. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2018, 166: 739-746, http://dx.doi.org/10.1016/j.petrol.2018.03.066.
[31] Duan, Yongting, Li, Xiao, He, Jianming, Li, Shouding, Zhou, Runqing. Quantitative analysis of meso-damage evolution for shale under in situ uniaxial compression conditions. ENVIRONMENTAL EARTH SCIENCES[J]. 2018, 77(4): https://www.webofscience.com/wos/woscc/full-record/WOS:000426755300041.
[32] He, Jianming, Lin, Chong, Li, Xiao, Zhang, Yixiang, Chen, Yi. Initiation, propagation, closure and morphology of hydraulic fractures in sandstone cores. FUEL[J]. 2017, 208: 65-70, http://dx.doi.org/10.1016/j.fuel.2017.06.080.
[33] Zhang, Zhaobin, Li, Xiao, He, Jianming, Wu, Yusong, Li, Guanfang. Numerical study on the propagation of tensile and shear fracture network in naturally fractured shale reservoirs. JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING[J]. 2017, 37: 1-14, http://dx.doi.org/10.1016/j.jngse.2016.11.031.
[34] He, Jianming, Zhang, Zhaobin, Li, Xiao. Numerical Analysis on the Formation of Fracture Network during the Hydraulic Fracturing of Shale with Pre-Existing Fractures. ENERGIES[J]. 2017, 10(6): http://dx.doi.org/10.3390/en10060736.
[35] Li, Shouding, Zhou, Zhongming, Li, Xiao, Liu, Linan, He, Jianming, Liu, Yanhui. One CT imaging method of fracture intervention in rock hydraulic fracturing test. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2017, 156: 582-588, http://dx.doi.org/10.1016/j.petrol.2017.06.050.
[36] Li, Xiao, Duan, Yongting, Li, Shouding, Zhou, Runqing. Study on the Progressive Failure Characteristics of Longmaxi Shale under Uniaxial Compression Conditions by X-ray Micro-Computed Tomography. ENERGIES[J]. 2017, 10(3): https://doaj.org/article/b1584ff263344cbe9098fe64ade3178a.
[37] Lin, Chong, He, Jianming, Li, Xiao, Wan, Xiaole, Zheng, Bo. An Experimental Investigation into the Effects of the Anisotropy of Shale on Hydraulic Fracture Propagation. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2017, 50(3): 543-554, https://www.webofscience.com/wos/woscc/full-record/WOS:000401440000003.
[38] Cheng, Cheng, Li, Xiao, Qian, Haitao. Anisotropic Failure Strength of Shale with Increasing Confinement: Behaviors, Factors and Mechanism. MATERIALS[J]. 2017, 10(11): https://doaj.org/article/9c0924dc37c34853a3c1518b2c4fb6c9.
[39] Cheng, Cheng, Li, Xiao, Li, Shouding, Zheng, Bo. Failure Behavior of Granite Affected by Confinement and Water Pressure and Its Influence on the Seepage Behavior by Laboratory Experiments. MATERIALS[J]. 2017, 10(7): https://doaj.org/article/00a6a694646649b4af875088b5582ad7.
[40] Cheng Cheng, Xiao Li, Shouding Li, Bo Zheng. Geomechanical Studies on Granite Intrusions in Alxa Area for High-Level Radioactive Waste Disposal. SUSTAINABILITY[J]. 2016, 8(12): http://ir.iggcas.ac.cn/handle/132A11/11571.
[41] Wang, Yu, Li, Xiao, Zhang, Bo, Zhao, Zhiheng. Optimization of multiple hydraulically fractured factors to maximize the stimulated reservoir volume in silty laminated shale formation, Southeastern Ordos Basin, China. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING[J]. 2016, 145: 370-381, http://dx.doi.org/10.1016/j.petrol.2016.05.033.
[42] Wang, Y, Li, X, Zheng, B, Ma, C F. An Experimental Investigation of the Flow-Stress Coupling Characteristics of Soil-Rock Mixture Under Compression. TRANSPORT IN POROUS MEDIA[J]. 2016, 112(2): 429-450, http://ir.iggcas.ac.cn/handle/132A11/11607.
[43] Wang, Yu, Li, Xiao, Zhang, Bo. Numerical Modeling of Variable Fluid Injection-Rate Modes on Fracturing Network Evolution in Naturally Fractured Formations. ENERGIES[J]. 2016, 9(6): http://ir.iggcas.ac.cn/handle/132A11/11609.
[44] Zhao, Zhiheng, Li, Xiao, Wang, Yu, Zheng, Bo, Zhang, Bo. A Laboratory Study of the Effects of Interbeds on Hydraulic Fracture Propagation in Shale Formation. ENERGIES[J]. 2016, 9(7): http://ir.iggcas.ac.cn/handle/132A11/11633.
[45] Wang, Y, Li, X, Zheng, B, Zhang, B, He, J M, Li, S D. Macro-meso failure mechanism of soil-rock mixture at medium strain rates. GEOTECHNIQUE LETTERS[J]. 2016, 6(1): 28-33, https://www.webofscience.com/wos/woscc/full-record/WOS:000371988300005.
[46] Wang, Y, Li, X, Zhang, Y X, Wu, Y S, Zheng, B. Gas shale hydraulic fracturing: a numerical investigation of the fracturing network evolution in the Silurian Longmaxi formation in the southeast of Sichuan Basin, China, using a coupled FSD approach. ENVIRONMENTAL EARTH SCIENCES[J]. 2016, 75(14): http://ir.iggcas.ac.cn/handle/132A11/11616.
[47] Wang Yu, Li Xiao, Zhou RunQing, Tang ChunAn. Numerical evaluation of the shear stimulation effect in naturally fractured formations. SCIENCE CHINA-EARTH SCIENCES[J]. 2016, 59(2): 371-383, http://ir.iggcas.ac.cn/handle/132A11/11618.
[48] Wang, Y, Li, X, Zhang, B. Analysis of Fracturing Network Evolution Behaviors in Random Naturally Fractured Rock Blocks. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2016, 49(11): 4339-4347, http://ir.iggcas.ac.cn/handle/132A11/11612.
[49] Wang, Yu, Li, Xiao, Hu, Ruilin, Ma, Chaofeng, Zhao, Zhiheng, Zhang, Bo. Numerical Evaluation and Optimization of Multiple Hydraulically Fractured Parameters Using a Flow-Stress-Damage Coupled Approach. ENERGIES[J]. 2016, 9(5): http://ir.iggcas.ac.cn/handle/132A11/11610.
[50] Wang Yu, Li Xiao, Zhao ZhiHeng, Zhou RunQing, Zhang Bo, Li GuanFang. Contributions of non-tectonic micro-fractures to hydraulic fracturing-A numerical investigation based on FSD model. SCIENCE CHINA-EARTH SCIENCES[J]. 2016, 59(4): 851-865, http://ir.iggcas.ac.cn/handle/132A11/11619.
[51] Wang, Yu, Li, Xiao, He, Jianming, Zhao, Zhiheng, Zheng, Bo. Investigation of Fracturing Network Propagation in Random Naturally Fractured and Laminated Block Experiments. ENERGIES[J]. 2016, 9(8): http://ir.iggcas.ac.cn/handle/132A11/11611.
[52] Wu, Yanfang, Li, Xiao. Numerical Simulation of the Propagation of Hydraulic and Natural Fracture Using Dijkstra's Algorithm. ENERGIES[J]. 2016, 9(7): http://ir.iggcas.ac.cn/handle/132A11/11623.
[53] Zhang, Bo, Li, Xiao, Zhang, Zhaobin, Wu, Yanfang, Wu, Yusong, Wang, Yu. Numerical Investigation of Influence of In-Situ Stress Ratio, Injection Rate and Fluid Viscosity on Hydraulic Fracture Propagation Using a Distinct Element Approach. ENERGIES[J]. 2016, 9(3): http://ir.iggcas.ac.cn/handle/132A11/11629.
[54] Zhang, Zhaobin, Li, Xiao. The Shear Mechanisms of Natural Fractures during the Hydraulic Stimulation of Shale Gas Reservoirs. MATERIALS[J]. 2016, 9(9): http://ir.iggcas.ac.cn/handle/132A11/11632.
[55] Zhang, Zhaobin, Li, Xiao, He, Jianming. Numerical Study on the Permeability of the Hydraulic-Stimulated Fracture Network in Naturally-Fractured Shale Gas Reservoirs. WATER[J]. 2016, 8(9): http://ir.iggcas.ac.cn/handle/132A11/11630.
[56] Zhang, Zhaobin, Li, Xiao. Numerical Study on the Formation of Shear Fracture Network. ENERGIES[J]. 2016, 9(4): http://ir.iggcas.ac.cn/handle/132A11/11631.
[57] Y Wang, X Li, B Zheng, T Q Mao, R L Hu. Investigation of the effect of soil matrix on flow characteristics for soil and rock mixture. GÉOTECHNIQUE LETTERS[J]. 2016, 6(3): 226-233, http://ir.iggcas.ac.cn/handle/132A11/11606.
[58] He, Jianming, Li, Shouding, Li, Xiao, Wang, Xu, Guo, Jingyun. Study on the Correlations Between Abrasiveness and Mechanical Properties of Rocks Combining with the Microstructure Characteristic. ROCK MECHANICS AND ROCK ENGINEERING[J]. 2016, 49(7): 2945-2951, http://ir.iggcas.ac.cn/handle/132A11/11577.
[59] Wang Yu, Li Xiao, Zhou RunQing, Zheng Bo, Zhang Bo, Wu YanFang. Numerical evaluation of the effect of fracture network connectivity in naturally fractured shale based on FSD model. SCIENCE CHINA-EARTH SCIENCES[J]. 2016, 59(3): 626-639, http://ir.iggcas.ac.cn/handle/132A11/11617.
[60] Zhang, Zhaobin, Li, Xiao, He, Jianming, Wu, Yanfang, Zhang, Bo. Numerical Analysis on the Stability of Hydraulic Fracture Propagation. ENERGIES[J]. 2015, 8(9): 9860-9877, http://ir.iggcas.ac.cn/handle/132A11/7822.
[61] Wang, Y, Li, X, Hu, R L, Li, S D, Wang, J Y. Experimental study of the ultrasonic and mechanical properties of SRM under compressive loading. ENVIRONMENTAL EARTH SCIENCES[J]. 2015, 74(6): 5023-5037, http://ir.iggcas.ac.cn/handle/132A11/7809.
[62] Wang, Y, Li, X, Wu, Y F. Damage evolution analysis of SRM under compression using X-ray tomography and numerical simulation. EUROPEANJOURNALOFENVIRONMENTALANDCIVILENGINEERING[J]. 2015, 19(4): 400-417, http://ir.iggcas.ac.cn/handle/132A11/7805.
[63] Zhang, Zhaobin, Li, Xiao, Yuan, Weina, He, Jianming, Li, Guanfang, Wu, Yusong. Numerical Analysis on the Optimization of Hydraulic Fracture Networks. ENERGIES[J]. 2015, 8(10): 12061-12079, http://ir.iggcas.ac.cn/handle/132A11/7821.
[64] Wang, Y, Li, X, Zheng, B, Zhang, B, Wang, J B. Real-time ultrasonic experiments and mechanical properties of soil and rock mixture during triaxial deformation. GEOTECHNIQUE LETTERS[J]. 2015, 5(4): 281-286, http://ir.iggcas.ac.cn/handle/132A11/7807.
[65] Wang, Y, Li, X, Wu, Y F, Lin, C, Zhang, B. Experimental study on meso-damage cracking characteristics of RSA by CT test. ENVIRONMENTAL EARTH SCIENCES[J]. 2015, 73(9): 5545-5558, http://ir.iggcas.ac.cn/handle/132A11/7808.
[66] Wang, Y, Li, X. Experimental study on cracking damage characteristics of a soil and rock mixture by UPV testing. BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT[J]. 2015, 74(3): 775-788, http://ir.iggcas.ac.cn/handle/132A11/7806.
[67] Yuan, Weina, Li, Xiao, Pan, Zhejun, Connell, Luke D, Li, Shouding, He, Jianming. Experimental Investigation of Interactions between Water and a Lower Silurian Chinese Shale. ENERGY & FUELS[J]. 2014, 28(8): 4925-4933, http://ir.iggcas.ac.cn/handle/132A11/8202.
[68] Wang Yu, Li Xiao, Zhang Bo, Wu YanFang. Meso-damage cracking characteristics analysis for rock and soil aggregate with CT test. SCIENCE CHINA-TECHNOLOGICAL SCIENCES[J]. 2014, 57(7): 1361-1371, http://ir.iggcas.ac.cn/handle/132A11/8197.
[69] Yuan, Weina, Pan, Zhejun, Li, Xiao, Yang, Yunxia, Zhao, Chunxia, Connell, Luke D, Li, Shouding, He, Jianming. Experimental study and modelling of methane adsorption and diffusion in shale. FUEL[J]. 2014, 117: 509-519, http://dx.doi.org/10.1016/j.fuel.2013.09.046.
[70] Wu, Yanfang, Li, Xiao, Wang, Yu, Zhang, Bo. An Improved Algorithm in Porosity Characteristics Analysis for Rock and Soil Aggregate. DISCRETE DYNAMICS IN NATURE AND SOCIETY[J]. 2014, 2014(798235): https://www.webofscience.com/wos/woscc/full-record/WOS:000344262700001.
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[73] Jianming He Xiao Li Shouding Li Yueping Yin Haitao Qian. Study of the seismic response of colluvium accumulation slope by particle flow code. GRANULARMATTER[J]. 2010, 12: 483-490, http://ir.iggcas.ac.cn/handle/132A11/10038.
[74] Li, Xiao, Liao, Qiulin, Wang, Sijing, Liu, Jishan, Lee, Souting. On evaluating the stability of the Baiyian ancient landslide in the Three Gorges Reservoir area, Yangtze River: a geological history analysis. ENVIRONMENTAL GEOLOGY[J]. 2008, 55(8): 1699-1711, https://www.webofscience.com/wos/woscc/full-record/WOS:000259730000008.
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