Blasting stress characteristics of fan-pattern holes in coal-rock media
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摘要: 在大量現場實驗基礎上選擇有代表意義的實際工程為背景,利用三維數值模擬方法,建立了較合理的煤-巖介質穿層爆破計算模型,獲得不同位置抽放孔有效應力隨時間的變化規律,分別探討了各特定位置有效應力隨距離增加而衰減的差異.計算結果表明:在計算模型條件下,復合介質孔口煤層和孔底煤層中爆破擊穿范圍分別為1.4和1.8 m;孔底由于受應力波的疊加和反射雙重作用影響,在相同距離時孔底有效應力平均值較孔口大73%;煤-巖復合介質中煤層爆破效果優于單煤層爆破效果,在同等情況下,復合介質煤層中孔口處有效應力極值較單煤層增加17%~42%,孔底增加6%~24%.Abstract: Based on a lot of mining experiments, a representative blasting engineering was studied by three-dimensional numerical simulation. A numerical computational model of coal-rock media was constructed for the through strata blasting. Effective stress changes at different locations with time were acquired, and the difference in the decrease of effective stress with increasing distance was analyzed in different gas draining holes. Numerical simulation results show that the maximum radius of the area ruptured is up to 1.4 and 1.8 m for the top and bottom of the hole in the multi-media, respectively. The average value of effective stress in the bottom of the hole is 73% higher than that in the top at the same distance due to stress wave interference and reflection in the bottom of the hole. The blasting effect for a coal seam in the multi-media is better than that in a single coal seam. Under the same condition, the maximum value of the effective stress at the top and bottom of the hole in the multi-media is 17% to 42% and 6% to 24% higher than that in a single coal seam, respectively.
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Key words:
- coal mines /
- blasting /
- stress analysis /
- numerical methods
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