Study on energy consumption and failure mechanism of water-saturated coal sample during impact cracking

被引:1
作者
Gu, Zhoujie [1 ,2 ]
Shen, Rongxi [1 ,2 ]
Liu, Zhentang [1 ,2 ]
Zhou, Xin [1 ,2 ]
Wang, Xiulei [1 ,2 ]
机构
[1] China Univ Min & Technol, Key Lab Gas & Fire Control Coal Mines, Minist Educ, Xuzhou 221116, Jiangsu, Peoples R China
[2] China Univ Min & Technol, Sch Safety Engn, Xuzhou 221116, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Water-saturated; Dynamic load; Failure; Fractal energy; DISSIPATION;
D O I
10.1016/j.gete.2024.100593
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
To uncover the mechanism of energy dissipation in coal samples when subjected to both water and dynamic load, the damage patterns and energy absorption properties of coal samples in their natural and saturated states were investigated and analyzed through Hopkinson impact experiments. The results of the study show that the mass and wave velocity of the natural coal samples show an increasing trend when they are saturated with water. And the mass and wave velocity increase by 6.35 % and 21.42 % respectively. The coal sample's level of fragmentation and dynamic strength exhibited a positive correlation with the velocity (1 m/s-5.69 m/s) of impact. When subjected to dynamic loads, both natural and water-saturated coal samples primarily undergo splitting, fracturing, and crushing. Compared with natural coal samples, saturated water coal samples show greater degree of crushing and lower mechanical strength. The dynamic strength of saturated coal sample at 5.25 m/s (15.66 MPa) decreased by 33.86 % compared with that at 5.69 m/s (23.68 MPa). The mean size of particles in coal samples, both in their natural state and when saturated with water, had an linear reduction relationship with impact speed. Conversely, the fractal dimension, which represents dissipation, had a direct relationship with impact speed. The fractal dimensions of dry and saturated coal samples are distributed in the ranges of 1.56-2.08 and 1.65-2.1, respectively. And the dissipative energy of natural coal samples between 1.09 m/s and 5.67 m/s is about 0.039 J/cm(3)-0.175 J/cm(3), and that of saturated coal samples between 1 m/s and 5.25 m/s is about 0.034 J/cm(3)-0.088 J/cm(3). The surface energy of coal samples was analysed and calculated, and an energy consumption prediction model was proposed to predict the energy consumption of coal samples after dynamic crushing.
引用
收藏
页数:13
相关论文
共 48 条
[21]   Thermal shock effects on the mechanical behavior of granite exposed to dynamic loading [J].
Li, Xiang ;
Li, Baijin ;
Li, Xibing ;
Yin, Tubing ;
Wang, Yan ;
Dang, Wengang .
ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING, 2020, 20 (03)
[22]   Experimental Study on the Damage Evolution Behavior of Coal Under Dynamic Brazilian Splitting Tests Based on the Split Hopkinson Pressure Bar and the Digital Image Correlation [J].
Li, Xiaoliang ;
Liu, Zhentang ;
Zhao, Enlai ;
Liu, Yubing ;
Feng, Xiaojun ;
Gu, Zhoujie .
NATURAL RESOURCES RESEARCH, 2023, 32 (03) :1435-1457
[23]   Effects of Acid Sulfate and Chloride Ion on the Pore Structure and Mechanical Properties of Sandstone Under Dynamic Loading [J].
Li, Xiaoliang ;
Liu, Zhentang ;
Feng, Xiaojun ;
Zhang, Huajie ;
Feng, Junjun .
ROCK MECHANICS AND ROCK ENGINEERING, 2021, 54 (12) :6105-6121
[24]   Analysis of progressive damage and energy consumption characteristics of gas-bearing coal under cyclic dynamic loads [J].
Liu, Xiaofei ;
Cai, Duke ;
Gu, Zhoujie ;
Zhang, Siqing ;
Zhou, Xin ;
Gao, Ang .
ENERGY, 2024, 306
[25]   Calculation model of coal comminution energy consumption [J].
Liu, Xuemin ;
Zhang, Man ;
Hu, Nan ;
Yang, Hairui ;
Lu, Junfu .
MINERALS ENGINEERING, 2016, 92 :21-27
[26]   Influence of water on rockburst proneness of sandstone: Insights from relative and absolute energy storage [J].
Luo, Song ;
Gong, Fengqiang ;
Peng, Kang ;
Liu, Zhixiang .
ENGINEERING GEOLOGY, 2023, 323
[27]   Energy Dissipation and Release During Coal Failure Under Conventional Triaxial Compression [J].
Peng, Ruidong ;
Ju, Yang ;
Wang, J. G. ;
Xie, Heping ;
Gao, Feng ;
Mao, Lingtao .
ROCK MECHANICS AND ROCK ENGINEERING, 2015, 48 (02) :509-526
[28]   Infrared Radiation and Acoustic Emission of Damage Evolution and Failure Precursory for Water-Bearing Coal [J].
Shan, Tiancheng ;
Li, Zhonghui ;
Zhang, Xin ;
Niu, Yue ;
Tian, He ;
Zhang, Quancong ;
Zang, Zesheng ;
Gu, Zhoujie ;
Cai, Chao ;
Liu, Chen .
ROCK MECHANICS AND ROCK ENGINEERING, 2022, 55 (12) :7657-7674
[29]  
Shen R, 2024, Eng Fract Mech, V310
[30]   Influence of the Fractal Distribution of Particle Size on the Critical State Characteristics of Calcareous Sand [J].
Shen, Xue ;
Shen, Yang ;
Xu, Junhong ;
Liu, Hanlong .
FRACTAL AND FRACTIONAL, 2022, 6 (03)