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Experience of Using the ANZI Strain Cell for Three-Dimensional, In-Situ Stress Determinations in Deep Exploration Boreholes

机译:在深探测井眼中使用ANZI应变单元进行三维现场应力测定的经验

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This paper describes the Australia, New Zealand Inflatable (ANZI) strain cell, its operation, and recent development for overcoring in exploration boreholes. The ANZI strain cell is an instrument system that uses the overcoring method of stress relief to determine the three-dimensional, in-situ stresses in rock. The instrument has been used successfully for over three decades in numerous underground mining and civil projects, but technical advances over the last decade or so have allowed the system to be deployed in surface exploration boreholes to greater depths than was previously possible. Recent development of a downhole electronic data logger, a wireline-enabled drilling system, and an instrument deployment system has simplified the process of obtaining three-dimensional overcore measurements at depths approaching 1km to a single shift operation. The capability to deploy ANZI strain cells in surface exploration boreholes represents a significant breakthrough for the design of underground mines and underground excavations generally. High-confidence characterisation of the in-situ stresses at the design stage provides the opportunity to design key infrastructure and mining systems to take advantage of the in-situ stress field from the outset before mining begins. Understanding the three-dimensional, in-situ stress field not only provides a measure of the magnitude and direction of loads acting within the rock mass, it also provides insight into the mechanics of all the various processes driving ground deformations, including which geological fault structures are at limiting equilibrium.
机译:本文介绍了澳大利亚,新西兰的可充气(ANZI)应变池,其操作以及勘探井眼超标情况的最新发展。 ANZI应变单元是一种仪器系统,它使用应力消除的过调方法来确定岩石中的三维原位应力。该仪器已经在众多地下采矿和民用项目中成功使用了三十多年,但是在过去的十年左右的技术进步已使该系统能够以比以前更大的深度部署在地表勘探井眼中。井下电子数据记录仪,有线钻井系统和仪器部署系统的最新开发简化了在单次移位操作中获得接近1公里深度的三维岩心测量值的过程。在地面勘探井孔中部署ANZI应变单元的能力代表了地下矿山和地下挖掘总体设计的重大突破。在设计阶段就对地应力进行了高可信度的表征,这为设计关键基础设施和采矿系统提供了机会,从而可以从一开始就利用矿山应力场开始开采。了解三维现场应力场不仅可以衡量岩体中载荷的大小和方向,还可以洞悉驱动地面变形的所有各种过程的力学,包括哪些地质断层结构处于极限平衡状态。

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