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Piling and Raise Bore Construction - Key Learnings from a Client's Perspective

机译:打桩和提高钻孔建设 - 从客户的角度来看

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Highly weathered ground, limited collar options and the need to achieve a desired outcome at the lowest possible cost led to the need to adopt a construction approach that had no established design methodology. The newest ventilation shaft at Mandalay Resources' Costerfield Operations had to be established to a depth of 30 m through poor ground best described as 'sticky swelling clay', some of which was contained within an old backfilled pit.The ability to excavate a traditional presink was not possible due to limited space and the introduction of men into the shaft was to be avoided due to the associated safety risks and corresponding increase in cost. Piling in conjunction with raise boring and remote fibrecrete application was identified as a possible solution that could achieve the desired outcome at an acceptable level of risk.Construction of the piles was challenging and required continual refinement until an acceptable level of productivity could be achieved. Limitations on concrete delivery was taken into consideration to ensure hole stand-up time was acceptable and re-drills were not required. The adoption of a set process from alignment, drilling, concrete placement and testing ensured the desired design was achieved. Mine operators should consider the use of piling as a method of shaft stabilisation for the portion of raise bored shaft that passes through the weathered zone.The importance of quality control and attention to detail through the entire shaft construction process cannot be underestimated as issues such as insufficient geotechnical investigation, pile and pilot hole deviation, concrete and fibrecrete quality, as well as delays in the application of fibrecrete can place the success of the project at risk.This paper outlines key learnings from a client's perspective with regards to the concept, planning, design, execution and completion of a 3.1 m diameter raise bore shaft through both weathered and highly structured ground at the Augusta Mine.
机译:高度风化的地面,有限的领心,需要以最低可能的成本实现所需结果导致需要采用没有建立设计方法的建筑方法。曼德勒资源的最新通风轴的Costerfield作业必须通过贫困地被描述为“粘性膨胀粘土”的贫困地区的深度建立,其中一些是在一个旧的回填坑内所载的。挖掘一种传统的前链接的能力由于空间有限,由于相关的安全风险和成本相应增加,应避免由于空间有限,因此将男性引入轴中。与升高钻孔和远程纤维分泌申请结合起来是可以识别的一种可能解决方案,可以在可接受的风险水平下达到所需的结果。桩的建设是挑战,并且需要持续改进,直到可以实现可接受的生产率水平。考虑到对具体交付的限制,以确保孔安装时间是可接受的,并且不需要重新钻头。通过对准,钻孔,混凝土放置和测试采用设定过程确保了所需的设计。矿山运营商应考虑使用堆积的方法,以升高穿过风化区域的升高钻井轴的轴稳定。通过整个轴施工过程的质量控制和注意细节的重要性不能低估如岩土性调查不足,桩和飞行员洞偏离,混凝土和纤维分泌品质以及纤维分泌应用的延误可以放置危险项目的成功。本文概述了客户对概念,规划方面的关键的关键学习,规划,直径3.1米直径的设计,执行和完成,通过奥古斯塔矿的风化和高度结构的地面升高孔轴。

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