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Performance of Cover System Field Trials for Waste Rock at Myra Falls Operations

机译:米德拉瀑布运营的废弃岩石封面系统现场试验的表现

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Four field test plots were constructed in 1998 on a sloped waste rock surface at the Myra Falls Operations of Boliden Westmin (Canada) Limited to evaluate hydraulic performance of alternate cover system designs. The field test plot cover systems were designed to control oxygen ingress and water infiltration to the underlying waste rock while providing a medium for a grass and legume vegetation cover. The test plots consisted of a bare waste rock surface (control plot), and three additional plots consisting of native compacted till placed directly on the waste rock surface, overlain by non-compacted till. Two of the test plots included a compacted till layer ameliorated with flyash and bentonite, respectively, to improve moisture retention and reduce permeability. The third test plot consisted of a compacted layer of native till overlain by non-compacted till. A performance monitoring system was installed in each test plot to evaluate net percolation and oxygen ingress to the underlying waste rock. In addition, each test plot has profiles of matric suction, water content, and temperature sensors installed at up-slope and down slope locations. A review of four years of monitoring data shows that the compacted till/bentonite cover system has been most successful in limiting the infiltration of meteoric waters and oxygen ingress to the underlying waste rock material. The compacted till/flyash and compacted till cover systems have produced similar net percolation results and neither have functioned well in maintaining an oxygen ingress layer throughout the year. The amelioration of bentonite with till to produce a compacted barrier layer shows promise in reducing water and oxygen ingress at the MFO site, while the incorporation of flyash with the till did not result in a significant increase in performance. The field performance data clearly demonstrates the need for developing field trials prior to full-scale construction, as opposed to relying solely on an un-calibrated numerical modelling to design the full-scale cover system.
机译:在1998年,在MyRA的倾斜废弃物岩石表面上建造了四个现场测试图,Boliden Westmin(加拿大)的跌落作业仅限于评估交替覆盖系统设计的液压性能。现场测试绘图覆盖系统设计用于将氧气进入和水浸润控制到下面的废岩,同时为草和豆科植被覆盖提供介质。测试图包括一个裸露的废岩表面(控制图),以及由直接放在废岩表面上的天然压实的三个附加图,通过非压实俯仰。两个测试图分别包括分别用Flyash和Bentonite缓解的压实层,以改善水分保留并降低渗透性。第三种测试图包括通过非压实直到俯仰的压实的天然层。在每个测试图中安装了性能监测系统,以评估净渗透和氧气进入底层废岩。此外,每个测试曲线具有安装在上斜率和下斜率位置的原型吸力,含水量和温度传感器的曲线。对四年监测数据的审查表明,压实的直到/膨润土覆盖系统最为成功地限制了流动水域和氧气进入到底层废岩材料。压实的直到/粉碎和压实直到覆盖系统已经产生了类似的净渗透结果,并且在全年保持氧气入口层方面都没有运作。膨润土的改善与直到产生压实的屏障层,展示了在MFO位点的水和氧气进入的承诺,同时将粉煤加入到直到直到没有导致性能显着增加。现场性能数据清楚地证明了在满量程建设之前开发现场试验的需要,而不是仅依赖于未校准的数值模型来设计全尺寸覆盖系统。

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