Abstract

Based on plastic limit analysis, the deformation and fracture mechanism of the floor in the large-span chambers of deep mines are discussed and a similarity model test is carried out to verify the reliability of the theoretical analysis. The results show that the local shear failure first appears below the loading area and develops to the middle part of the test model with the increase in load; when the local shear failure develops to form a continuous sliding surface, continuous plastic flow deformation occurs; the distribution of the plastic zone and the deformation mode obtained from the similarity model test are basically consistent with the Hill-like deformation mode derived from plastic limit analysis. A control technology with anti-slide piles is proposed in order to deal with floor heave in large-span chambers on the basis of previous work. An approach for determining the supporting parameters of anti-slide piles is deduced. To deal with the floor heave in the −1100 level gangue winch room of the Huafeng Coal Mine, a comprehensive reinforcement scheme with anti-slide piles composed of discarded rails and anti-floating anchors is introduced for the floor heave control of the chambers. Site monitoring results show that the scheme not only effectively restrains the development of floor heave, but also ensures the long-term stability of the chamber floor.

Highlights

  • With shallow coal resources dried up and the demand for coal increasing in China, most of the coal mines in development are deep

  • Deformation and failure mechanism of floor heave in the deep large-span chamber were discussed by means of plastic limit analysis theory

  • We proposed anti-slide pile controlling of floor heave in the same situation and derived the supporting parameters of the anti-slide pile

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Summary

Introduction

With shallow coal resources dried up and the demand for coal increasing in China, most of the coal mines in development are deep. This paper discusses the deformation and failure mechanism of the chamber floor in which the crustal stress field is mainly vertical stress based on the deformation and failure of the deep and large-span chamber floor in the Huafeng Coal Mine and describes a stability control technology combining anti-slide piles with anti-floating anchors and derives a method of designing support parameters from limit equilibrium theory. Practice shows that such a supporting scheme can effectively control floor heave and provide good economic and social benefits

Plastic Flow Characteristics of the Floor in Deep Chambers
Ultimate Bearing Capacity of the Floor in Deep and Large-Span Chambers
Model Test Based on Digital Speckle Correlation Method
Digital Speckle Correlation Method
Test Scheme
Analysis of Displacement Evolution Law
Length Determination of Anti-Slide Pile
Formatting of Mathematical Components
Bearing Capacity of Anti-Slide Pile
General Engineering Situation
Support Scheme of Chamber Floor
Length Calculation of Anti-Slide Pile
Stability Check of Floor
Conclusions
Patents
Full Text
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