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New Continuous Production System in Block Cave Mining the Rock Flow System

机译:砌块洞穴挖掘系统的新连续生产系统

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At the last MassMin Conference in Sudbury, Caterpillar's vision of a continuous mining concept for block caving operations was presented on the background of global raw material demand and its continuous increase. By analysing today's structure of mining processes in block caving, the paper (Krings, Steinberg and Frenzel, 2012) highlighted the main bottlenecks in the process chain and identified conceptual solutions by help of a case study. The main focus was the paradigm shift from discontinuous batch type operation to a continuous mining process of the blocks.In 2016, the strategic vision has taken major strides forwards and remote continuous operation has become a reality. Caterpillar's continuous operation system - the Rock Flow system - was successfully installed in Codelco's Andina mine and start of operation is scheduled in the first half of 2016.Based on continuous product developments, this paper sets the focus on two main aspects of continuous mining. First, field experiences of the Rock Flow system will be shared, highlighting the Andina project course from system installation, to commissioning and successful system start. The second aspect concentrates on the system and mine layout as discussed in the case study scenario in MassMin 2012 (Krings, Steinberg and Frenzel, 2012).Based on Caterpillars continuouVproduct development, the Rock Flow system set-up and panel design were modified for a general roadway design and drawpoint layout. The new design allows an optimised use in block preparation phase (spreading) and full production phase (reaping), operating a fleet of load-haul-dumps (LHDs) and Rock Flow systems. The combined use of the two technologies optimises the mining process in every stage of block life and significantly increases the performance of the continuous block cavingpperation in the production panel to pave the road for the next generation of super caves.
机译:在Sudbury的最后一个Massmin会议上,在全球原材料需求的背景下,提出了萨特彼勒对街区崩落作业的连续采矿概念的愿景及其不断增加。通过分析当今在块塌陷中的采矿过程结构,本文(KRINGS,Steinberg和Frenzel,2012)突出了过程链中的主要瓶颈,并通过案例研究确定了概念解决方案。主要重点是从不连续批量型操作的范式转移到块的连续采矿过程。2016年,战略视力已经采取了重大进展,远程连续运作已成为现实。 Caterpillar的连续操作系统 - 岩石流量系统 - 成功安装在Codelco的Andina Mine,并在2016年上半年安排运营开始。在持续的产品开发方面,这些论文集中了对连续采矿的两个主要方面的重点。首先,将共享岩石流系统的现场体验,突出显示和从系统安装的Andina项目课程,调试和成功的系统启动。第二个方面专注于系统和矿井布局,如Massmin 2012的情况下讨论的(Krings,Steinberg和Frenzel,2012)。基于毛毛虫继续开发,修改了岩石流动系统设置和面板设计一般巷道设计和绘图点布局。新设计允许在块制备阶段(展开)和全生产阶段(REAPAPE)中进行优化的用途,操作船队的负载拖车(LHD)和岩石流量系统。两种技术的结合使用优化了块寿命的每个阶段的采矿过程,显着提高了生产面板中连续块凸起的性能,以铺设下一代超级洞穴。

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