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Meikle Mine Backfill System - A Case History

机译:Meikle矿井回填系统-案例历史

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The Meikle Mine uses long-hole open stoping and cut-and-fill methods with backfill as the primary ground support technique. The mine operates at 2,858 tonnes per day (3,150 tpd) and has sustained operation in excess of 3,175 tonnes per day (3,500 tpd). Consistent backfill production is critical in achieving these mining rates. The heart of the system is a 7.65 cubic meter (10-cyd) horizontal shaft ribbon mixer located 328 m (1,075 ft) underground. System control is through several PLC's, allowing for a high degree of automation and process flexibility. Aggregate feed is routed 257 m (842 ft) through vertical drop pipes in the ventilation shaft, a rockbox, transfer raises, and then into either of two raisebored storage silos. The aggregate is crushed mine waste, nominally 70% 3.8 cm x 1.0 cm (1-1/2″x 3/8″) and 30% -1.0 cm (- 3/8″). The binder is routed through a vertical borehole, surge bins, and transfer raises. The binder is a mixture of Type II cement and fly ash. Two primary manufactured fill designs are produced: a high strength mix for stopes which will be undercut; and a low strength mix for stopes with only rib exposure. The high strength target is 5.5 Mpa (800psi) unconfined compressive strength in test cylinders. The low strength target is 2.8 Mpa (400 psi). The system has allowed consistent achievement of these targets, while experience has allowed reduced costs and increased efficiencies. Fill placement is through 6.1 cubic meter (8 cyd) LHD's dumping into stopes. Specific sills and cut-and-fill drifts are jammed to the back. System enhancements have included colloidal mixers for cemented waste slurry placement and transfer raises for sending manufactured fill to the lower levels of the mine.
机译:Meikle矿使用长孔露天采掘和填埋法,并以回填作为主要的地面支撑技术。该矿的日产量为2858吨(每天3150吨),持续运营的日产量超过3175吨(每天3500吨)。一致的回填生产对于实现这些采矿率至关重要。系统的核心是位于地下328 m(1,075 ft)的7.65立方米(10 cyd)水平轴带式混合机。系统控制通过多个PLC进行,从而实现高度自动化和过程灵活性。骨料进料通过通风竖井中的垂直落水管(岩石箱)输送257 m(842英尺),输送提升物,然后进入两个提升孔存储仓中的任意一个。骨料是压碎的矿山废料,通常为70%3.8厘米x 1.0厘米(1-1 / 2英寸x 3/8英寸)和30%-1.0厘米(-3/8英寸)。活页夹穿过垂直的井眼,调压仓和传送凸起。粘合剂是II型水泥和粉煤灰的混合物。产生了两种主要的人造填充设计:用于底切的高强度混合料;低强度混合料,仅暴露肋骨的采摘场。在测试气缸中,高强度目标是5.5 Mpa(800psi)的无限制抗压强度。低强度目标是2.8 Mpa(400 psi)。该系统可以始终如一地实现这些目标,而经验可以降低成本并提高效率。填充物料通过6.1立方米(8 cyd)LHD倾倒入采场。特定的门槛和挖填坑的漂移卡在了后面。系统的改进包括胶体混合器,用于胶结废物浆液的放置,以及用于将人造填料送至矿山下层的转移提升。

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