4.6 Article

Study on Evolution Mechanism of Structure-Type Rockburst: Insights from Discrete Element Modeling

期刊

SUSTAINABILITY
卷 13, 期 14, 页码 -

出版社

MDPI
DOI: 10.3390/su13148036

关键词

structure-type rockburst; evolution mechanism; particle flow code; flat-joint model

资金

  1. Distinguished Youth Science Foundation of Hunan Province of China [2019JJ20028]
  2. National Natural Science Foundation of China [41630642]

向作者/读者索取更多资源

This study delves into the evolution mechanism of structure-type rockbursts, finding that the failure mechanism includes tensile and shear fractures, distinguishing it from strainbursts. Factors such as friction coefficient, rockmass heterogeneity, lateral pressure coefficient, and structural plane length play crucial roles in determining the intensity of structure-type rockbursts.
Taking the 11.28 rockburst occurred in the Jinping II Hydropower Station as the engineering background, the evolution mechanism of structure-type rockburst was studied in detail based on the particle flow code. The results indicate that the failure mechanism of structure-type rockburst includes a tensile fracture induced by tangential compressive stress and a shear fracture caused by shear stress due to overburdened loadings and shear slip on the structural plane. In addition, it is found that the differences between structure-type rockburst and strainburst mainly include (a) the distribution of the local concentrated stress zone after excavation, (b) the evolution mechanism, and (c) the failure locations. Finally, the influence of four factors on the structure-type rockburst are explored. The results show that (1) when the friction coefficient is greater than 0.5, the effect of structural plane is weakened, and the rock near excavation tends to be intact, the structural-type rockburst intensity decreases; (2) the dissipated and radiated energy in structural-type rockburst reduces with rockmass heterogeneity m; (3) the lateral pressure coefficient has a significant effect on the intensity of deep rock failure, specifically in the form of the rapid growth in dissipative energy; (4) and the structural-type rockburst is more pronounced at a structural plane length near 90 mm.

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