Abstract With the third innovation in science and technology worldwide, China has also experienced this marvelous progress. Concerning the longwall mining in China, the “masonry beam theory” (MBT) was first proposed in the 1960s, illustrating that the transmission and equilibrium method of overburden pressure using reserved coal pillar in mined-out areas can be realized. This forms the so-called “121 mining method”, which lays a solid foundation for development of mining science and technology in China. The “transfer rock beam theory” (TRBT) proposed in the 1980s gives a further understanding for the transmission path of stope overburden pressure and pressure distribution in high-stress areas. In this regard, the advanced 121 mining method was proposed with smaller coal pillar for excavation design, making significant contributions to improvement of the coal recovery rate in that era. In the 21st century, the traditional mining technologies faced great challenges and, under the theoretical developments pioneered by Profs. Minggao Qian and Zhenqi Song, the “cutting cantilever beam theory” (CCBT) was proposed in 2008. After that the 110 mining method is formulated subsequently, namely one stope face, after the first mining cycle, needs one advanced gateway excavation, while the other one is automatically formed during the last mining cycle without coal pillars left in the mining area. This method can be implemented using the CCBT by incorporating the key technologies, including the directional pre-splitting roof cutting, constant resistance and large deformation (CRLD) bolt/anchor supporting system with negative Poisson's ratio (NPR) effect material, and remote real-time monitoring technology. The CCBT and 110 mining method will provide the theoretical and technical basis for the development of mining industry in China.
[1]
Huang Zheng-gu,et al.
Research on the Technique of No-Pillar Mining with Gob-Side Entry Formed by Advanced Roof Caving in the Protective Seam in Baijiao Coal Mine
,
2011
.
[2]
Manchao He,et al.
Latest progress of soft rock mechanics and engineering in China
,
2014
.
[3]
He Man-chao,et al.
CONCEPTION SYSTEM AND EVALUATION INDEXES FOR DEEP ENGINEERING
,
2005
.
[4]
Manchao He,et al.
Development of a novel energy-absorbing bolt with extraordinarily large elongation and constant resistance
,
2014
.
[5]
Wang Gang.
Discussion on Gateway Retained Along Goaf Technology with Roof Breaking and Pressure Releasing
,
2012
.
[6]
Zhou Jie,et al.
Stability Control of Surrounding Rocks in Deep Entry of Jiahe Coal Mine
,
2007
.
[7]
Zhifeng Liu,et al.
3D simulation of hydrocarbon-expulsion history: a method and its application
,
2013
.
[8]
Jia Yao-dong,et al.
STUDY ON ROCK MECHANICS IN DEEP MINING ENGINEERING
,
2005
.