[1] |
HE Qi, CHEN Shi-wan, YANG Fu-bo, TIAN Yun-lei.
Crack Propagation of Beishan Granite under Brazilian Splitting Test at Different Temperatures
[J]. Journal of Yangtze River Scientific Research Institute, 2023, 40(2): 115-123.
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[2] |
CHANG Xin-ke, WU Shun-chuan, CHENG Hai-yong, FU Xin.
Full-waveform Characteristics and Frequency Spectrum of Acoustic Emission for Fine Sandstone
[J]. Journal of Yangtze River Scientific Research Institute, 2022, 39(7): 118-125.
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[3] |
YI Fu, JIN Hong-song, YU Hui-ze, DU Chang-bo, YU Ben.
Macro-and-microscopic Analysis of Shear Strain Zone of Reinforced Tailings Based on Partical Flow Code
[J]. Journal of Yangtze River Scientific Research Institute, 2022, 39(4): 116-121.
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[4] |
CHEN Yong-feng, ZHANG Hai-dong, ZHAO Guang-chen.
Experimental Study on Deformation Failure and Crack Propagation of End Jointed Rock Bridge under Different Loading Rates
[J]. Journal of Yangtze River Scientific Research Institute, 2021, 38(7): 66-72.
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[5] |
LI Yong, CAI Wei-bing, LI Bang-xiang, ZHU Wei-shen.
Experimental and DEM Analysis on 3-D Crack Propagation Mechanism under Uniaxial Compression
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2020, 37(10): 96-102.
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[6] |
LI Hao-yang, YAO Qiang, HUA Tian-bo, WU Fa-ming, LI Xiao-hu, LI Hong-tao.
PFC3D-based Study on Strength and Damage Model of No-fines Concrete
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(6): 127-132.
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[7] |
JIANG Wei, SONG Peng-cheng, CHEN Wei, WANG Yan-hai, MAO Cong.
Cushioning Capacity of Soils Against Rockfall’s Impact Force Based on Two-dimensional Particle Flow Code
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(4): 49-54.
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[8] |
LIANG Rui, WANG Shu-jiang, ZHOU Wen-hai, HUANG Xiao-bin, XIONG Zheng-yu, WANG Jian-yong.
Crack Propagation Caused by Slope Excavation Blasting Based on Stress and Velocity Time History Analysis
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(12): 71-77.
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[9] |
LIU Guan-shi, CHEN Yong-gui, ZHANG Gui-bao, ZENG Xian-yun.
Crack Propagation Law of Compacted Expansive Soil with Various Original Compactness and Water Content
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(11): 91-97.
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[10] |
LI Xiao-qing,QI Yang,TANG Xin-jun, GAO Qiang.
Simulation of Base Soil-filter System with Two TypicalGradations Based on PFC
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(4): 92-97.
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[11] |
YUAN Jun-ping, SHI Yu-zhou, DING Guo-quan, WANG Qiang-lin.
Statistical Algorithms for Pore Size Distribution of Rock-soil Mass Based on PFC2D
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(11): 61-65.
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[12] |
NIU Jiang rui,YAO Chi, YANG Jian hua, ZHOU Chuang bing.
Numerical Study on Strength and Crack Coalescence Behavior ofSandstone Containing Two Pre-existing Non-coplanar FissuresBased on Improved Rigid Body Spring Method
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(10): 102-106.
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[13] |
LIU Fu-you,CHEN Peng-yu,YU Hong-ming.
PFC Simulation of Uniaxial Compression and Brazilian Splitting Test of Rock Based on Flat-jointed Bonded-particle Material
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2016, 33(9): 60-65.
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[14] |
KANG Shi-lei, YANG Jun-sheng, YANG Feng.
Macro-and-meso Analysis of Failure Behavior of Rock-like Sampleswith Flaws Using a Numerical Method
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2016, 33(4): 71-77.
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[15] |
CHEN Xiu-yun.
Effect of Single Closed Central Fissure on Failure Characteristics of Cracked Rock under Uniaxial Compression
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2015, 32(9): 104-110.
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