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CONSTRUCTION OF THE TAILINGS STORAGE FACILITY FRESHET MANAGEMENT EMBANKMENT CUT OFF WALL AT MOUNT POLLEY MINE

机译:珀利山矿尾矿储存设施淡水管理堤防截堤的建设

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On August 4th, 2014, a breach occurred in the Perimeter Embankment of the Tailings Storage Facility (TSF) located at the Mount Polley Mine, releasing approximately 10.6 million m~3 of supernatant water, 7.3 million m~3 of tailings solids, 6.5 million m~3 of tailings interstitial water and 0.6 million m~3 of construction materials. A Temporary Upstream Rockfill Berm was constructed between August 2014 and February 2015 within the area of the tailings dam failure in order to retain the remaining tailings solids during the low flows of the winter season. The Temporary Upstream Rockfill Berm was constructed as part of the initial response phase, with the primary objective to abate the flow of tailings into the receiving environment. A secondary objective of its construction was facilitating the required investigation works downstream of the tailings dam failure. The selection of the coarse grained material used in the construction of the Temporary Upstream Rockfill Berm was based on the availability of the material (timeliness of construction) and the non-water retaining design of this initial response phase. Consequently, an alternative method was required in order to prevent further loss of mine-affected water and tailings from the TSF, as well as to provide short-term contingency water storage, during high flow conditions expected in late spring. Golder Associates Ltd. designed the 2015 Freshet Management Embankment, a deep mixing cut-off wall, to meet these site requirements, which was constructed by Mount Polley Mining Corporation and Golder Construction Inc. between December 2015 and April 2015. The works included 132 soil cement panels constructed to depths of up to 27 meters. This aspect of the works was completed using an RG25S Bauer CSM rig on a 24 hour per day, 7 day per week schedule. The cut-off wall specifications included a target unconfined compressional strength (UCS) of between 1 and 2 MPa, a maximum hydraulic conductivity of lxl 0"6 cm/s, and a ductility to enable the soil cement to undergo a minimum of 5% strain without a reduction in strength or increase in hydraulic conductivity. In order to control and assure the quality of the soil cement, 2553 wet grab specimens were retrieved from the fresh soil cement panels using a project-developed sampler. Four of the soil cement panels were cored with a mud-rotary drill rig and optical and acoustic televiewers were placed into the boreholes in order to log several relevant parameters, including image, texture, relative hardness, borehole-shape, and temperature.
机译:2014年8月4日,位于波利山矿山的尾矿储存设施(TSF)的外围路堤发生了泄漏,释放出约1060万立方米〜3的上清水,730万立方米〜3的尾矿固体,650万m〜3的尾矿质间隙水和60万m〜3的建筑材料。 2014年8月至2015年2月,在尾矿坝故障区域内建造了一个上游上游堆石场,以保留冬季低流量时剩余的尾矿固体。上游上游堆石场是初期响应阶段的一部分,其主要目的是减少尾矿流入接收环境的速度。其建设的第二个目标是促进尾矿坝故障下游所需的调查工作。临时上游堆石场建造中使用的粗粒材料的选择基于该材料的可用性(施工的及时性)和该初始响应阶段的非保水设计。因此,需要一种替代方法,以防止在春季晚些时候的高流量条件下,地雷影响的水和TSF的尾矿进一步流失,并提供短期的应急储水。为了满足这些现场要求,Golder Associates Ltd.设计了2015 Freshet管理路堤,这是一道深层搅拌防渗墙,由Mount Polley Mining Corporation和Golder Construction Inc.在2015年12月至2015年4月之间建造。工程包括132块土壤水泥板的最大深度为27米。工程的这一方面是使用RG25S Bauer CSM钻机按每天24小时,每周7天的时间表完成的。防渗墙规范包括目标无侧限抗压强度(UCS)在1-2 MPa之间,最大水力传导率为1xl 0“ 6 cm / s,并且具有延展性以使土壤水泥能够承受至少5%的压力应变,而不降低强度或增加水力传导率。为了控制和确保土壤水泥的质量,使用项目开发的采样器从新鲜的土壤水泥板上取回了2553个湿抓取标本。用泥浆旋挖钻机进行钻孔,然后将光学和声学电视观众放到钻孔中,以便记录几个相关参数,包括图像,纹理,相对硬度,钻孔形状和温度。

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