Abstract

When the hard and thick key strata are located above the working face, the bed separation structure is easy to be formed after mining because of the high strength and integrity of the hard and thick key strata and the initial breaking step is large. After the hard, thick strata are broken, the overburden will be largely collapsed and unstable in a large area and the dynamic disaster is easily induced. In this study, considering the fundamental deformation and failure effect of coal seam, the development law of the bed separation and the fractures under hard and thick magmatic rocks and the mechanism of breaking induced disaster of hard and thick magmatic rocks are studied by similar simulation tests. The results of the study are as follows: (1) The similar material ratio of coal seam is obtained by low-strength orthogonal ratio test of similar materials of coal seam, that is, cement:sand:water:activated carbon:coal = 6:6:7:1.1:79.9. (2) The magmatic rocks play a role in shielding the development of the bed separation, which makes the bed separation beneath the magmatic rock in an unclosed state for a long time, providing space for the accumulation of gas and water. (3) The distribution pattern of the fracture zone shows different shapes as the advancing of working face and the fracture zone width of the rear of working face coal wall is larger than that of the front of the open-off. (4) The breaking of magmatic rocks will press the gas and water accumulated in the bed separation space below to rush towards the working face along the fracture zone at both ends of the goaf. The above results are verified through the drainage borehole gas jet accident in the Yangliu coal mine. The research results are of great significance for revealing the occurrence process of dynamic disasters and adopting scientific and reasonable preventive measures.

Highlights

  • There are often magmatic rock intrusions in coal measures strata and the variation process and occurrence state have great influence on mining safety [1,2,3]

  • When the working face is covered with hard thick magmatic rocks, the development of overburden overburden fractures has obvious characteristics in the direction of the working face height and fractures has obvious characteristics in the direction of the working face height and advancement

  • Under combined action of action vacuum negative and physical properties, thereleased gas released in the seam mining processand andthe the gas gas pressure pressure and physical properties, the gas in the coalcoal seam mining process remaining in the goaf are collected into the bed separation space of the lower part of the magmatic rock remaining in the goaf are collected into the bed separation space of the lower part of the magmatic through the surrounding fractures, forming a bed separation gas, as shown

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Summary

Introduction

There are often magmatic rock intrusions in coal measures strata and the variation process and occurrence state have great influence on mining safety [1,2,3]. The analysis shows that the dynamic phenomena in the 10,414 working face, such as the gas jet from drainage borehole and the roof water burst, are caused by high igneous rock collapse, which results in the rapid closure of the bottom separation space and induces water-gas outburst It is of great theoretical significance and application value for the control of rock strata and prevention and control of dynamic disasters to study the evolution law of the mining induced bed separation and fracture under the hard and thick magmatic rocks and to reveal the mechanism of the corresponding dynamic disasters. The field theoretical and numerical simulation studyinand analyze disaster mechanism and measuredlaw data reliable, theystrata cannot theface characteristics of bed separation development breaking ofare hard and thick in reflect working mining. Significance to predict and prevent dynamic disasters of coal mining under the hard and thick strata

Selection
Cement Optimization
Orthogonal Ratio Test Scheme
Optimization of Ratio Scheme for Similar Materials in Coal Seam
An Overview of Similar Simulation Test
Similar Conditions for Similar Simulation Experiments
Test Material Selection and Model Making
Test Model Laying
Monitoring Arrangement and Mining Method
Overburden Bed Separation Morphology and Developmental Height Evolution
Dynamic
Analysis of Evolution Law of Mining-Induced Overburden Fractures
Mechanism of Breaking Induced Disaster of Hard and Thick Magmatic Rocks
Figure
Engineering Case Analysis
12. The sharply ejecta was water-gas mixture theoccurred gas jet lasted
Findings
Conclusions
Full Text
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