Stability analysis of stope retention pillars in broken rock conditions
-
摘要:
采用巖體分級方法(RMR法)、Q系統和地質強度(GSI)指標對礦巖進行了工程地質評價,并通過擴展后的Hoek-Brown節理強度準則進行巖體力學參數確定.根據白羊礦段礦柱布置形式,推導出礦柱荷載公式,并確定了礦柱強度計算參數.針對井下礦柱主要破壞形式分別進行失穩機理分析.將正交設計法引入采場結構參數優化分析中,對各開采方案進行了三維數值模擬.運用正交極差分析法對礦柱穩定性影響因素敏感度進行評價.實踐結果表明:采場高度控制在3.5~4.5 m,礦房寬度取值不大于5 m,礦柱直徑不小于3.5 m留存礦柱穩定性基本能得到保障.
Abstract:After a proper engineering geological evaluation with rock mechanics rating(RMR) method,Q system and geological strength index(GSI),the mechanical parameters of rock masses were obtained by the extended Hoek-Brown failure criterion.According to the pillar layout of Baiyang ore section,a formula of pillar load was derived,and some parameters for calculating the pillar strength were also determined.The pillar instability mechanisms were respectively analyzed in view of main failure modes.Orthogonal design was introduced to optimization of the stope structure parameter.On this basis,the three-dimensional numerical simulation of each mining program was carried out.The sensitivity of influencing factors for pillar stability was assessed using the method of orthogonal range analysis.The practice shows that the stability of retention pillars can be safeguarded when the stope height is controlled in the range of 3.5 to 4.5 m,the stope width less than 5 m,and the pillar diameter not less than 3.5 m.
-
Key words:
- engineering geology /
- pillars /
- stability /
- finite element method /
- safety factor
-

計量
- 文章訪問數: 257
- HTML全文瀏覽量: 82
- PDF下載量: 14
- 被引次數: 0