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Cover system performance - using numerical modelling to optimise monitoring systems

机译:覆盖系统性能 - 使用数字建模来优化监控系统

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Lysimeters are widely used in the mining and waste industries to directly measure the performance of cover systems installed for rehabilitation of containment facilities (the facility) to restrict net percolation (deep infiltration) and oxygen flux. As lysimeters are conceptually simple, stakeholders place significant emphasis on performance measured by these systems, which adds to the importance of obtaining representative net percolation values. However, the design of lysimeters for cover system monitoring programs in the mining industry often does not consider fundamental aspects of lysimeter design, leading to inaccurate measurement of percolation. Lysimeters also require complementary soil monitoring equipment in order to measure multiple parameters of a cover system's water balance, and thus its overall performance.Newmont Boddington Gold Mine, located in Western Australia, implemented rehabilitation field trials for assessing the performance of an updated closure strategy for its Waste Rock Dumps (WRD). The extensive monitoring required for assessment of the cover system performance included the design and installation of a lysimeter to measure percolation. Sizing, that is the depth and area dimensions of the lysimeter, was completed through numerical modelling. Numerical modelling is used to ensure that the lysimeter performs to expectations under a wide range of conditions encountered during the life of the facility.O'Kane Consultants completed an integrated numerical assessment to develop the monitoring system design for performance monitoring of the WRD cover system. Completion of a performance analysis was required for selection of the optimal lysimeter design whilst considering installation and cost. Numerical modelling was undertaken to simulate and compare the relative performance of various lysimeter configurations. Geostudio's VADOSE/W and SEEP/W, two commercially available software packages, were coupled to simulate long-term percolation through the cover system and seepage rates through the lysimeter's base. This paper presents the methodology utilised, results of numerical simulations of lysimeter designs and final design of the performance monitoring system.
机译:Lysimers广泛用于采矿和废物行业,直接测量安装的覆盖系统的性能,用于康复设备(设施)来限制净渗透(深浸润)和氧气通量。由于Lysimers是概念性简单的,利益相关者显着强调这些系统测量的性能,这增加了获得代表净渗透值的重要性。然而,用于挖掘系统的覆盖系统监测计划的Lysimers的设计往往不考虑Lysimeter设计的基本方面,从而不准确的渗滤量。 Lysimeters还需要互补的土壤监测设备,以衡量覆盖系统的水平的多个参数,因此其整体表现。在澳大利亚州西澳大利亚州的整体绩效,为评估更新的闭幕战略的绩效实施了康复现场试验。它的废弃岩石倾倒(WRD)。评估覆盖系统性能所需的广泛监视包括设计和安装Lysimeter以测量渗滤量。通过数值建模完成了尺寸,即Lysimeter的深度和面积尺寸。数值建模用于确保Lysimeter在设施寿命期间遇到的各种条件下对期望进行了预期.O'Kane顾问完成了一个集成的数字评估,以开发用于WRD覆盖系统的性能监测的监控系统设计。在考虑安装和成本的同时,需要完成性能分析以选择最佳的Lysimeter设计。对数值建模进行了模拟和比较各种Lysimeter配置的相对性能。 GeoStudio的Vadose / W和Seep / W,两个商业上可用的软件包,通过覆盖系统和通过Lysimeter的基部模拟长期渗透率。本文介绍了利用的方法,Lysimeter设计的数值模拟结果和性能监测系统的最终设计。

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