Rockburst tendency analysis and its energy prediction in Chengchao Iron Mine
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摘要: 根據系統的工程地質調查,在對井下-430~-568m范圍內巖樣進行力學實驗研究的基礎上,采用RMR巖體分類方法和高地應力條件下適應性較好的Q系統,對深部圍巖進行了工程分類,并分析了RMR、RQD與巖爆的關系.認為程潮鐵礦深部(-500m以下)巖體發生巖爆的可能性較大.通過對礦區地應力分布規律的研究,探討了礦區高應力環境對巖爆孕育的影響.最后,通過對礦區采場三維有限元數值模擬,分析了深部開采礦巖能量分布規律,據此推斷該礦巖爆臨界深度在-500m水平.從模擬結果可以看出:地應力環境受上部開采活動的影響,-500m水平應力明顯增加,高于-533m水平;-533m水平以下,隨著垂直深度增加,礦巖能量最大值逐漸增大.Abstract: According to the results of systematical engineering geological surveys, based on the rock mechanical experiment of specimens from-430 m level to-568 m level, the Q system which is well applicable to high geostress conditions and the RMR method were applied to rock engineering classification. The relation of rockbursts to the values of RMR and RQD was analyzed. It is known that there is the probability of rockbursts below-500 m level in Chengchao Iron Mine. The influence of high geostress environment on rockburst preparation was discussed by studying geostress distribution laws. Finally, the distribution state of energy in surrounding rockmass during deep mining excavation was studied by 3D FEM numerical analysis, and it is inferred that the critical depth of rockbursts is-500 m. On the base of simulation results, the in-situ stress strengthens significantly at-500 m level due to the impact of upper mining activities, higher than at-533 m level. Below-533m level, the maximum value of rockmass energy also progressively increase with the incremental vertical depth.
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Key words:
- rockbursts /
- rock classification /
- 3D numerical simulation /
- elastic strain energy
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