DocumentCode
3349222
Title
Numerical simulation of hard top-coal´s pulsed caving in fully mechanized caving face
Author
Wei, Jinping ; Sang, Peimiao ; Li, Zongcen ; Ding, Guoxi
Author_Institution
Sch. of Energy Sci. & Eng., Henan Polytech. Univ., Jiaozuo, China
fYear
2010
fDate
26-28 June 2010
Firstpage
208
Lastpage
210
Abstract
In order to improve the top-coal recovery in fully mechanized longwall face, the hard top-coal caving was simulated through particle flow program in three dimensions. According to the pressing cracking test of hard coal, the top-coal´s fragmentation size and spatial distribution were simulated. Considering the condition of top-coal caving path, the shield beam angle, the friction coefficient between the top-coal and the shield beam were simulated also. On the basis of the 4 factors above, 3 levels of each factor were considered, so the orthogonal numerical test was carried out. Based on the evaluation index, the volume of caved top-coal, the influence of the above 4 factors on the top-coal recovery was studied through the range method. According to the kinetic energy obtained from the numerical calculation, the pulsed caving, which was affected by the appearance and disappearance of the arch, was revealed. The results showed that the size and spatial position of top-coal block is the determinants of the recovery ratio. The bigger the block, and the lower the block layer, the more obvious the arch effect. The contact force and the friction energy showed that the transient arch could become the stable arch which induced the ending of top-coal caving.
Keywords
coal; friction; geotechnical engineering; thermal stress cracking; cracking test; evaluation index; friction coefficient; geotechnical engineering; hard top-coal pulsed caving; kinetic energy; mechanized caving face; particle flow program; shield beam angle; spatial distribution; transient arch; Analytical models; Friction; Kinetic energy; Numerical models; Numerical simulation; Particle beams; Power engineering and energy; Pressing; Production; Testing; arch; block; longwall; particle flow; pulsed caving;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechanic Automation and Control Engineering (MACE), 2010 International Conference on
Conference_Location
Wuhan
Print_ISBN
978-1-4244-7737-1
Type
conf
DOI
10.1109/MACE.2010.5535603
Filename
5535603
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