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The importance of revisiting landform design after key decision-making events

机译:重新审视地形设计后重点决策事件的重要性

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URS Australia Pty Ltd (now AECOM Australia Pty Ltd) was commissioned to prepare technical specifications and oversee remediation works to construct a containment cell for the encapsulation of lead tailings at the Northampton State Lead Battery site in Western Australia. The design and construction works were conducted between September 2009 and January 2010 with the objective to reduce residual risks and long-term liabilities associated with a safe, stable and non-polluting site. Design of the containment cell was to encapsulate an approximate volume of 20,000 m~3 lead tailings. As the onsite work progressed, 14,000m3 of additional buried tailings materials were identified and, due to a lack of other suitable options, it was determined by the client and other relevant stakeholders that the additional volume of tailings had to be encapsulated within the same footprint. This altered the design of the cell significantly, which subsequently affected the desired rehabilitation outcomes. The scope did not allow for an alteration of rehabilitation methodology and consequently, three years post construction works, the landform showed signs of instability and the landform surface would not sustain vegetation. In 2013 a refocussed effort was made to promote achievable rehabilitation outcomes. Despite various technical challenges such as steep batters, lack of growth medium, and challenging climatic conditions, these rehabilitation efforts have been successful; the landform is currently safe, stable, non-polluting, and is on a path towards hosting self-sustaining vegetation. As a result, a collaborative technical approach, inclusive of engineers, hydrologists, geotechnical and rehabilitation specialists has become an important component of all URS remediation projects.
机译:URS Australia Pty Ltd(现在AECOM Australia Pty Ltd)被委托制定了技术规范,并监督了修复工程,为北澳大利亚北南普通国家铅电池现场封装铅尾的遏制单元。设计和建筑工程于2009年9月至2010年1月至2010年1月进行,目的是降低与安全,稳定和非污染部位相关的剩余风险和长期责任。遏制细胞的设计是封装20,000m〜3铅尾矿的近似体积。由于现场工作进展,确定了14,000平方米的额外埋葬尾矿材料,并且由于缺乏其他合适的选择,由客户和其他相关利益攸关方确定,即必须在同一足迹内封装额外的尾矿量。这显着改变了细胞的设计,随后影响了所需的康复结果。该范围不允许改变康复方法,因此,建设工作岗位三年,地貌显示出不稳定的迹象,地貌表面不会维持植被。 2013年,对促进可实现的康复成果进行了重新求努力。尽管陡峭的击球运动等技术挑战,但缺乏增长培养基和挑战性气候条件,但这些康复努力取得了成功;地貌目前是安全,稳定,非污染,并在托管自我维持植被的路径上。因此,具有协作的技术方法,包括工程师,水文学家,岩土工程和康复专家所成为所有URS修复项目的重要组成部分。

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