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Designer waste landform modelling and design - Rum Jungle Mine

机译:设计师废物地貌型号与设计 - 朗姆酒丛林矿

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Rum Jungle is a former uranium mine site near Batchelor in the Northern Territory. Historical mining activities at the site between 1952 and 1971 have led to ongoing and adverse impacts on the surrounding environment. Sulfidic mine waste is prevalent in the Main and Intermediate Waste Rock Dumps (WRDs) and consequently, Acid and Metalliferous Drainage (AMD) is a problem. Even though a technical assessment after rehabilitation determined that the engineering and environmental criteria were met, ongoing impacts have led to contemporary water quality standards not being met in the East Branch of the Finniss River and soils around the site, and led to poor vegetation establishment and coverage. The Department of Mines and Energy (DME) is directing a collaborative, multi-phased rehabilitation planning process for the site. The Former Rum Jungle Mine Site Conceptual Rehabilitation Plan (CRP) (2013) outlines the objectives, the rehabilitation approach and preferred rehabilitation strategy for the mine site. Objectives for the site are to provide geotechnical and geochemical stability so as to allow for sustainable land uses by traditional Aboriginal owners of the site. To achieve these objectives, it is proposed to relocate all existing above ground WRDs, to either backfill the Main Pit void, or a single, stable and aesthetic waste storage facility (WSF) which will be constructed on site. Development of the strategic approach and detailed design of civil engineering works is currently underway to manage geochemically and radiologically active mine waste prevalent across the site. O'Kane Consultants Pty. Ltd. (OKC) is preparing rehabilitation designs for the overall site, supported by various (ongoing) technical assessments for the WSF and Main Pit. The detailed numerical modelling includes a material balance assessment, waste placement and oxygen ingress modelling, waste wetting up and drain down modelling, cover system and landform evolution modelling. The control of surface water, seepage, and erosion in the long-term and during construction is central to achieving the rehabilitation objectives. As such, assessment of the proposed WSF geometric design methodology by the practical implementation of landform evolution models, including Water Erosion Prediction Project (WEPP), SIBERIA and CAESAR-Lisflood is being completed. These models are used in conjunction with sophisticated terrain modelling software (Civil 3D) to assess future stability based on surface materials and desired landform geometry. The assessment methodology is based on lab testing and observations of erosion on existing landforms, and the validation adds confidence to the assessment. This enables improved aesthetic design for the proposed WSF, an important design objective, and can provide confidence in stability of the landform over long timeframes.
机译:朗姆酒丛林是北领地Batchelor附近的前铀矿场。 1952年至1971年间网站的历史采矿活动导致对周围环境的持续和不利影响。硫型矿山废物在主要和中间废岩倾卸(WRD)中普遍存在,因此,酸和冶金排水(AMD)是一个问题。尽管康复后的技术评估确定了工程和环境标准,但持续的影响导致了芬尼斯河和地区的土壤的东部分支机构的当代水质标准,并导致植被差覆盖范围。地雷和能源部(DME)正在指导该网站的协作,多相位的康复计划流程。前朗姆酒丛林矿场网站概念康复计划(CRP)(2013)概述了矿场地区的目标,康复方法和首选康复战略。该网站的目标是提供岩土工程和地球化学稳定性,以便允许该网站传统原住民的可持续土地使用。为实现这些目标,建议将所有现有的地面WRD搬迁,以回填主坑空隙,或者将在现场构建的单一,稳定和美学废物储存设施(WSF)。目前正在进行制定战略方法和土木工程作品详细设计,以管理全场地球化学和放射学活性矿井废物。 O'Kane顾问Pty。有限公司(OKC)正在为整体网站提供康复设计,由WSF和主坑的各种(持续)技术评估提供支持。详细的数值建模包括材料平衡评估,废物放置和氧气入口建模,废水润湿和排放模拟建模,覆盖系统和地形演进建模。在长期和施工期间,对地表水,渗流和侵蚀的控制是实现康复目标的核心。因此,通过实际实施地形进化模型的实际实施,包括水腐蚀预测项目(WEPP),西伯利亚和凯撒 - 林普敦的评估,提出了WSF几何设计方法。这些模型与复杂的地形建模软件(Civil 3D)结合使用,以评估基于表面材料和所需地形几何形状的未来稳定性。评估方法基于实验室测试和对现有地貌的侵蚀的观察,验证对评估增添了信心。这使得能够改进提出的WSF的美学设计,这是一个重要的设计目标,并且可以在长时间范围内对地形的稳定性提供置信度。

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