Analysis of Fracture Complexity in Northern Anhui Mining Area Based on Fractal Theory

2021 ◽  
Vol 11 (12) ◽  
pp. 1635-1641
Author(s):  
锟 王
2012 ◽  
Vol 457-458 ◽  
pp. 1202-1206 ◽  
Author(s):  
Yu Qi Liang ◽  
Shou Ting Zhang ◽  
Gong Wen Wang

Fractal is an important method to improve effect about geochemistry and geophysics, but currently fractal theory is rarely used in the field of remote sensing. In this paper, the multi-metal mining area in Lushi,Henan,China, is selected as the studying area , and the ETM + is the data source. Using the method of MPH (Masking, Principle component analysis(PCA), Hue and saturation transform (HIS) (MPH)) extracts alteration information from the studying area. The method includes three aspects: (1) mask, (2) PCA, (3) HIS transform. Next , adopting the method of summation in the fractal theory:the pixel brightness—area model make a quantitative analysis about the extracted iron alteration form MPH. And then compare the result with the common methods of threshold selection by standard deviation (SD). It is proved in this paper that the alteration information as a geologic record of spatial distribution has not only fractal characteristics but also multi-fractal characteristics. The research results show that fractal technique is an effective method to classify alteration information of remote sensing data, and it makes up for the weakness of threshold methods and achieves better results.


Lithosphere ◽  
2021 ◽  
Vol 2021 (Special 4) ◽  
Author(s):  
Zhiyu Zhang ◽  
Qingyun Qian ◽  
Hao Wang ◽  
Yonghui Huang ◽  
Jianguo Wang ◽  
...  

Abstract To study the dynamic damage and fracture of metamorphic limestone under explosive load and the stability of the surrounding rock, the stress-strain curve, fracture morphology, and energy dissipation characteristics of metamorphic limestone in the Dahongshan mining area under different strain rates were studied by the Hopkinson pressure bar (SHPB), stress wave analysis, and fractal theory. The experimental results show that the crushing form and degree are significantly affected by the loading strain rate. There are several typical failure modes. When the strain rate is 17.56 s−1, there is no obvious failure except corner cracks. When the strain rate is between 26.92 s−1 and 56.18 s−1, the failure mode of the specimen is axial splitting failure, and when the strain rate is 67.34 s−1, splitting and shearing failure occur. With the increase of the strain rate, the growth rate of the dynamic compressive strength slows down. Compared with static compressive strength, the strength factor increases from 1.15 to 4.19. Also, the fractal dimension shows a gentle increase. When Df is in the range of 1.82~2.24, there is a sudden change in fragmentation when the strain rate is in the range of 34.70 s−1~56.18 s−1. Energy dissipation density increases logarithmically with the strain rate. The results reveal the dynamic breaking and energy consumption laws of metamorphic limestone under impact loads with different strain rates and could provide some reference value for the safe and efficient construction in the Dahongshan mining area and similar engineering projects.


2013 ◽  
Author(s):  
Roberto Suarez-Rivera ◽  
Jeff Burghardt ◽  
Sergei Stanchits ◽  
Eric Edelman ◽  
Aniket Surdi

2013 ◽  
Author(s):  
Xin Wang ◽  
Yun Hong Ding ◽  
Nai Ling Xiu ◽  
Zhen Duo Wang ◽  
Yu Zhong Yan

2014 ◽  
Vol 13 (4) ◽  
pp. 861-871
Author(s):  
Thomas Sawidis ◽  
John M. Halley ◽  
Sonila Llupo ◽  
Dimitrios Bellos ◽  
Dimitrios Veros ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document