Numerical simulation of induced cutting in deep coal

Author:

Liu Si-fei12ORCID,Lu Shuai-feng12,Wan Zhi-jun12ORCID,Zhang Hong-wei12,Xing Ke-ke12

Affiliation:

1. Key Laboratory of Deep Coal Resource Mining (CUMT), Ministry of Education of China, China University of Mining and Technology, Xuzhou 221116, People's Republic of China

2. School of Mines, China University of Mining and Technology, Xuzhou 221116, People's Republic of China

Abstract

Deep coal cutting is a hot research topic at present. In this paper, the cutting technology of three-drum shearer was proposed based on previous studies. Besides, the influence of confining pressure on coal cutting performance was studied by using the discrete element method, and the induction effect of central cutting on coal cutting performance was discussed. Moreover, coal cutting with different boundary conditions was simulated with the aid of PFC 2D software. The results show that as the confining pressure increases, the model dominated by tensile failure does not change, but the crack gradually develops from the vertical direction to the free surface of coal. The cutting debris first increases and then decreases; so does the cutting force. Under the effect of central cutting, the crack tends to develop towards the free surface of coal more, and both the peak cutting force and the specific energy consumption increase with the increase of confining pressure. Induced by central cutting, with the increase of confining pressure, the reduction value of peak cutting force increases first and then decreases while the reduction value of cutting specific energy consumption increases.

Funder

The Fundamental Research Funds for the Central Universities

Publisher

The Royal Society

Subject

Multidisciplinary

Reference28 articles.

1. An engineering case of gobside entry retaining in one kilometer-depth soft rock roadway with high ground pressure;Zhang N;J. China Coal Soc.,2015

2. Deformation and support of rock roadway at depth more than 1000 meters;Kang H;Chin. J. Rock Mech. Eng.,2015

3. An overview of current status and progress in coal mining of the deep over a kilometer;Hu S;China Min. Mag.,2011

4. Opportunities and Challenges in Deep Mining: A Brief Review

5. Experimental and analysis research on water inrush catastrophe mode from coal seam floor in deep mining;Guo W;J. China Coal Soc.,2018

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