The occurrence of severe mine pressure in stope is of high risk, and the mining depth is the main control factor which affecting the occurrence of mine pressure in stope. In order to study the influence law of mining depth on stope strata behavior, taking 11318E fully mechanized working face in Xieqiao Coal Mine of Huainan Mining Group as the engineering background, the stress distribution and evolution characteristics of stope surrounding rock under mining depth were studied by similar material simulation. And the evolution laws of mechanical characteristics of stope surrounding rock under different mining depths of 600 m and 1200 m were simulated. It is concluded that with the increase of mining depth, the damage range of surrounding rock...
Abstract In order to comprehend the dynamic disaster mechanism induced by overburden rock caving dur...
Ultra-thick hard sandstone roofs present high thickness, poor delamination, and wide caving range. T...
In situ stress is the direct cause of roadway deformation and failure in the process of deep mining ...
Due to the lack of relevant investigation research on the evolution of mining stress in high stope o...
The mining spatial structure of isolated island face in extra-thick fully mechanized top-coal caving...
The variation of the in situ stress state is closely related to various factors. In situ stress stat...
The movement and destruction of the hard roof in a stope is an important reason for the occurrence o...
This study aims to tackle the problem of frequent coal-rock dynamic events caused by local stress co...
The study of the effects of mining height on overlying strata movement and underground pressure char...
In order to analyze the impact of compound breakage of key strata on overlying strata movement and s...
In order to analyze the impact of compound breakage of key strata on overlying strata movement and s...
The corresponding engineering effects are inevitable and occurred when the coal mines working face m...
In this study, based on the mining of the 13210 working face in the Yima coal mine of the Gengcun vi...
In this study, based on the mining of the 13210 working face in the Yima coal mine of the Gengcun vi...
Continuous mining of metal deposits leads the overlying strata to move, deform, and collapse, which ...
Abstract In order to comprehend the dynamic disaster mechanism induced by overburden rock caving dur...
Ultra-thick hard sandstone roofs present high thickness, poor delamination, and wide caving range. T...
In situ stress is the direct cause of roadway deformation and failure in the process of deep mining ...
Due to the lack of relevant investigation research on the evolution of mining stress in high stope o...
The mining spatial structure of isolated island face in extra-thick fully mechanized top-coal caving...
The variation of the in situ stress state is closely related to various factors. In situ stress stat...
The movement and destruction of the hard roof in a stope is an important reason for the occurrence o...
This study aims to tackle the problem of frequent coal-rock dynamic events caused by local stress co...
The study of the effects of mining height on overlying strata movement and underground pressure char...
In order to analyze the impact of compound breakage of key strata on overlying strata movement and s...
In order to analyze the impact of compound breakage of key strata on overlying strata movement and s...
The corresponding engineering effects are inevitable and occurred when the coal mines working face m...
In this study, based on the mining of the 13210 working face in the Yima coal mine of the Gengcun vi...
In this study, based on the mining of the 13210 working face in the Yima coal mine of the Gengcun vi...
Continuous mining of metal deposits leads the overlying strata to move, deform, and collapse, which ...
Abstract In order to comprehend the dynamic disaster mechanism induced by overburden rock caving dur...
Ultra-thick hard sandstone roofs present high thickness, poor delamination, and wide caving range. T...
In situ stress is the direct cause of roadway deformation and failure in the process of deep mining ...