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Innovation and future of mining rock mechanics
作者姓名:Manchao He  Qi Wang  Qunying Wu
作者单位:Key Laboratory for Geo-mechanics and Deep Underground Engineering;Research Institute for Deep Underground Science and Engineering of Beijing;Shanbei Coal Industry Co.
基金项目:This work was supported by the Natural Science Foundation of China(Grant Nos.52074164 and 42077267);the Major Scientific and Technological Innovation Project of Shandong Province,China(Grant No.2019SDZY04)。
摘    要:The 121 mining method of longwall mining first proposed in England has been widely used around the world.This method requires excavation of two mining roadways and reservation of one coal pillar to mine one working face.Due to considerable excavation of roadway,the mining roadway is generally destroyed during coal mining.The stress concentration in the coal pillar can cause large deformation of surrounding rocks,rockbursts and other disasters,and subsequently a large volume of coal pillar resources will be wasted.To improve the coal recovery rate and reduce excavation of the mining roadway,the 111 mining method of longwall mining was proposed in the former Soviet Union based on the 121 mining method.The 111 mining method requires excavation of one mining roadway and setting one filling body to replace the coal pillar while maintaining another mining roadway to mine one working face.However,because the stress transfer structure of roadway and working face roof has not changed,the problem of stress concentration in the surrounding rocks of roadway has not been well solved.To solve the above problems,the conventional concept utilizing high-strength support to resist the mining pressure for the 121 and 111 mining methods should be updated.The idea is to utilize mining pressure and expansion characteristics of the collapsed rock mass in the goaf to automatically form roadways,avoiding roadway excavation and waste of coal pillar.Based on the basic principles of mining rock mechanics,the“equilibrium mining”theory and the“short cantilever beam”mechanical model are proposed.Key technologies,such as roof directional presplitting technology,negative Poisson’s ratio(NPR)high-prestress constant-resistance support technology,and gangue blocking support technology,are developed following the“equilibrium mining”theory.Accordingly,the 110 and N00 mining methods of an automatically formed roadway(AFR)by roof cutting and pressure releasing without pillars are proposed.The mining methods have been applied to a large number of coal mines with different overburdens,coal seam thicknesses,roof types and gases in China,realizing the integrated mode of coal mining and roadway retaining.On this basis,in view of the complex geological conditions and intelligent mining demand of coal mines,an intelligent and unmanned development direction of the“equilibrium mining”method is prospected.

关 键 词:Mining  rock  mechanics  Equilibrium  mining  theory  Short  cantilever  beam  model  Automatically  formed  roadway  without  PILLARS  Intelligent  mining
收稿时间:18 October 2020

Innovation and future of mining rock mechanics
Manchao He,Qi Wang,Qunying Wu.Innovation and future of mining rock mechanics[J].Journal of Rock Mechanics and Geotechnical Engineering,2021,13(1):1-21.
Authors:Manchao He  Qi Wang  Qunying Wu
Affiliation:1. Key Laboratory for Geo-mechanics and Deep Underground Engineering, China University of Mining and Technology, Beijing, 100083, China;2. Research Institute for Deep Underground Science and Engineering of Beijing, China University of Mining and Technology, Beijing, 100083, China;3. Shanbei Coal Industry Co., Ltd., Shaanxi Shanmei Group, Yulin, 719000, China
Abstract:The 121 mining method of longwall mining first proposed in England has been widely used around the world.This method requires excavation of two mining roadways and reservation of one coal pillar to mine one working face.Due to considerable excavation of roadway,the mining roadway is generally destroyed during coal mining.The stress concentration in the coal pillar can cause large deformation of surrounding rocks,rockbursts and other disasters,and subsequently a large volume of coal pillar resources will be wasted.To improve the coal recovery rate and reduce excavation of the mining roadway,the 111 mining method of longwall mining was proposed in the former Soviet Union based on the 121 mining method.The 111 mining method requires excavation of one mining roadway and setting one filling body to replace the coal pillar while maintaining another mining roadway to mine one working face.However,because the stress transfer structure of roadway and working face roof has not changed,the problem of stress concentration in the surrounding rocks of roadway has not been well solved.To solve the above problems,the conventional concept utilizing high-strength support to resist the mining pressure for the 121 and 111 mining methods should be updated.The idea is to utilize mining pressure and expansion characteristics of the collapsed rock mass in the goaf to automatically form roadways,avoiding roadway excavation and waste of coal pillar.Based on the basic principles of mining rock mechanics,the "equilibrium mining" theory and the "short cantilever beam" mechanical model are proposed.Key technologies,such as roof directional presplitting technology,negative Poisson's ratio(NPR) high-prestress constant-resistance support technology,and gangue blocking support technology,are developed following the "equilibrium mining" theory.Accordingly,the 110 and N00 mining methods of an automatically formed roadway(AFR) by roof cutting and pressure releasing without pillars are proposed.The mining methods have been applied to a large number of coal mines with different overburdens,coal seam thicknesses,roof types and gases in China,realizing the integrated mode of coal mining and roadway retaining.On this basis,in view of the complex geological conditions and intelligent mining demand of coal mines,an intelligent and unmanned development direction of the "equilibrium mining" method is prospected.
Keywords:Mining rock mechanics  Equilibrium mining theory  Short cantilever beam model  Automatically formed roadway without pillars  Intelligent mining
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