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利用Belem模型计算拱架效应对于充填体垂直应力的转化率,分析充填体3种应力状态下的目标强度(支撑围岩、侧向暴露自立、支撑设备),对比拱架效应引入前后充填体垂直应力降低比率。结果表明:谦比希铜矿窄长形充填体自重应力为0.4 MPa,拱架效应转化后,充填体所受垂直应力仅为0.055 MPa,转化率达到86.25%,最大主应力为充填体宽度方向上的水平应力0.289 MPa;支撑围岩与设备要求强度1 MPa,自立要求强度0.2 MPa。窄长型充填体的目标强度设计应考虑拱架效应对于垂直应力的转化,从而降低相关技术经济指标。

The vertical stress transformation by arching effect was calculated by Belem model, the vertical stress reduction ratio was compared before and after the introduction of arch, which from the analysis of three kinds of forces (surrounding rock supporting, self-standing with one face exposed, equipment supporting). The results show that, the self-weight pressure of long-narrow backfill body in Chambishi Copper Mine is 0.4 MPa, after the arching effect transporting, the remained vertical pressure is 0.055 MPa, which means almost 86.25% self-weight press is diverted to the horizontal pressure. The maximum principal stress is 0.289 MPa with the direction of horizontal along the width of backfill body. The required UCS the surrounding rock and equipment supporting is 1 MPa, for self-standing with one face exposed is 0.2 MPa. The target strength design of long-narrow backfill body should consider the arching effect on transformation of the vertical stress, so as to reduce the related technical and economic index.

参考文献

[1] 王新民;赵建文;张德明.全尾砂絮凝沉降速度优化预测模型[J].中国有色金属学报,2015(3):793-798.
[2] 张修香;乔登攀.粗骨料高浓度充填料浆的管道输送模拟及试验[J].中国有色金属学报,2015(1):258-266.
[3] 杨建;王新民;张钦礼;柯愈贤.含硫高黏性三相流态充填浆体管道输送性能[J].中国有色金属学报,2015(4):1049-1055.
[4] 李公成;王洪江;吴爱祥;于少峰;陈辉;王晓宁;严庆文.基于倾斜管实验的膏体自流输送规律[J].中国有色金属学报,2014(12):3162-3168.
[5] 杨清平;滕丙娟;胡文达;刘晓辉;王贻明;姚高辉.谦比西铜矿西矿体采场结构参数优化[J].金属矿山,2012(5):1-4.
[6] 郭广礼;朱晓峻;查剑锋;王强.基于等价采高理论的固体充填采煤沉陷预计方法[J].中国有色金属学报(英文版),2014(10):3302-3308.
[7] Tikov Belem;Mostafa Benzaazoua.Design and Application of Underground Mine Paste Backfill Technology[J].Geotechnical and geological engineering,20082(2):147-174.
[8] 刘志祥;兰明;肖思友;郭虎强.尾砂胶结充填体的损伤破坏及其与岩体的合理匹配[J].中国有色金属学报(英文版),2015(3):954-959.
[9] Yilmaz, Erol;Belem, Tikou;Benzaazoua, Mostafa.Specimen size effect on strength behavior of cemented paste backfills subjected to different placement conditions[J].Engineering Geology,2015:52-62.
[10] Yi, X. W.;Ma, G. W.;Fourie, A..Compressive behaviour of fibre-reinforced cemented paste backfill[J].Geotextiles and geomembranes,20153(3):207-215.
[11] 郭雄;乔伟;罗骋.盘区上向水平分层充填法在谦比西铜矿的应用[J].采矿技术,2011(2):11-12,23.
[12] Li, L.;Aubertin, M..A modified solution to assess the required strength of exposed backfill in mine stopes[J].Canadian Geotechnical Journal,20128(8):994-1002.
[13] M. Pokharel;M. Fall.Combined influence of sulphate and temperature on the saturated hydraulic conductivity of hardened cemented paste backfill[J].Cement & concrete composites,2013:21-28.
[14] Li Li;Michel Aubertin.Numerical Investigation Of The Stress State In Inclined Backfilled Stopes[J].International journal of geomechanics,20092(2):52-62.
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