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In situ measurements of cemented paste backfill at the Cayeli mine

机译:Cayeli矿的水泥浆回填的原位测量

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Cemented paste backfill (CPB) is accepted as the optimal backfilling material for many underground mines. However, the lack of in-stope backfill pressure data poses fundamental problems from both operational and research standpoints. In response to the requirement for in situ data, a comprehensive field instrumentation project has been conducted. Results are presented here for two stopes at the Cayeli Mine, where geotechnical instruments were installed at the barricades and throughout the stopes. Measurements from a large (slow rise rate) stope with high binder content CPB demonstrated a rapid departure from hydrostatic loading, resulting in relatively low barricade pressures. Conversely, data from a smaller (fast rise rate) stope with lower binder content CPB demonstrated that when cement hydration is retarded, high barricade pressures occur. These examples illustrate the relationship between CPB rise rate and the moderating effect of cement hydration on in situ pressures, which ultimately control barricade pressures. Once CPB gains shear strength, arching of pressures occurs. In situ pressures were reduced with proximity to stope walls and further, under stope access brows, demonstrating that barricade location influences barricade loads. The application of real-time pressure monitoring of pastefill barricades has been demonstrated as an important tool in optimizing operational backfilling efficiency.
机译:水泥浆回填(CPB)被公认为许多地下矿山的最佳回填材料。但是,从操作和研究的角度来看,缺乏站内回填压力数据都构成了根本性的问题。为了响应对现场数据的需求,已开展了一个综合的现场仪表项目。这里显示了Cayeli矿的两个采场的结果,在路障和整个采场安装了岩土工程仪器。从具有高粘合剂含量CPB的大型(低上升速率)采场进行的测量表明,静水载荷迅速消失,导致路障压力相对较低。相反,来自较小(快速上升速率)采煤量和较低粘合剂含量CPB的数据表明,当水泥水化反应受阻时,会产生较高的路障压力。这些示例说明了CPB上升速率与水泥水化对现场压力的调节作用之间的关系,该压力最终控制路障压力。 CPB获得抗剪强度后,就会发生压力拱起。在采场壁附近降低了原地压力,并且在采场进入眉毛下进一步降低了路障的位置,这表明路障的位置会影响路障的负荷。糊料路障实时压力监控的应用已被证明是优化操作回填效率的重要工具。

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