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February 6, 2026Fractal and Fractional0 citationsOpen Access

Fractal Evolution of Mining-Induced Fractures in Thick and Hard Roofs Using Similar Simulation and Fractal Theory

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XCXuan CuiSYShengli YangHYHao Yue

Key Points

  • Investigate how fractures develop in overlying rock during coal extraction under thick roof conditions.
  • Established a mining physical model based on similarity simulation technology.
  • Tracked the fracture evolution process throughout coal extraction.
  • Performed quantitative analysis using fractal theory.
  • Fracture development correlates with mining advance distance.
  • Fractal dimension increases from the initial mining stage, reaching 1.436 as mining width increases.
  • Large-scale fracture expansion occurs when mining width exceeds roof limits, reaching a fractal dimension of 1.445.

Abstract

During coal mining, the development of joint fractures in overlying rock strata is one of the key factors that degrade the mechanical properties of rock masses, form water-conducting fracture zones, and induce safety hazards. To investigate the fracture evolution characteristics of overlying strata during coal extraction under thick and hard roof conditions, this study established a mining physical model based on similarity simulation technology, tracked the fracture evolution process, and performed quantitative analysis using fractal theory. The results show that fracture development is significantly correlated with the mining advance distance: the fractal dimension of fractures is small in the initial mining stage and gradually increases as the working face advances. When the mining width exceeds the ultimate span of the roof, local fractures expand rapidly with a sharp rise in the fractal dimension to 1.436; further increasing the mining width triggers large-scale sudden fracture expansion, resulting in severe degradation of rock mass integrity, with the maximum fractal dimension reaching 1.445. The research findings provide theoretical references for safety management and disaster prevention in coal mining under thick and hard roof conditions.

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Cite This Study

Cui et al. (2026) studied this question.

synapsesocial.com/papers/698585cb8f7c464f2300981ehttps://doi.org/10.3390/fractalfract10020110
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