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CFD analysis of 58 Adit main fans parallel installation for the 2015-2019 underground developments of the new level mine project

机译:新水平矿山项目2015-2019年地下开发中58台Adit主风机并行安装的CFD分析

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The New Level Mine project (NLMP), the planned underground expansion of the El Teniente mine in Rancagua, Chile, is expected to reach a daily extraction rate between 137 and 180 ktpd upon achieving full capacity. Production is planned to start in the year 2019. To achieve the 2015 to 2019 underground development schedule, the ventilation requirements were estimated to be in the range of 944 m(3)/s (2000 kcfm). To provide the airflow volume required, 189 m(3)/s (400 kcfm) has to be provided by the El Teniente mine, and the remaining by the main 74 and 75 Adits, currently in the final stage of their construction phase. However, providing the 189 m(3)/s (400 kcfm) will require significant modifications to the current system of El Teniente. As a result, a number of alternatives were explored, including adding raises to generate parallel airways and installing fans to reinforce the current ventilation system. From the alternatives studied, the installation of a second main fan (system) in parallel to an existing one was identified as the best operational solution and selected for implementation. However, the location and expected geometry of the ventilation circuit was not ideal and there were concerns as to the operation of both fans once the second fan was installed and commissioned. This paper presents the study used to estimate the operating points of both the current and the new fan, and to justify the parallel installation of the additional main fan. An additional computational fluid dynamics study was undertaken to validate the operating point, given the particular geometry of the fan's location and placement, to guarantee a stable operation of the fans. (C) 2015 Elsevier Ltd. All rights reserved.
机译:新级别矿山项目(NLMP)是智利Rancagua的El Teniente矿山的地下扩建计划,在达到满负荷生产后,预计日开采量将达到137至180 ktpd。计划于2019年开始生产。为实现2015年至2019年的地下开发进度,通风需求估计在944 m(3)/ s(2000 kcfm)的范围内。为了提供所需的风量,El Teniente矿区必须提供189 m(3)/ s(400 kcfm),其余的主要是74号和75号阿蒂斯,目前正处于施工阶段的最后阶段。但是,提供189 m(3)/ s(400 kcfm)的速度将需要对El Teniente当前的系统进行重大修改。结果,探索了许多替代方案,包括增加加高以产生平行气道,以及安装风扇以加强现有的通风系统。从研究的替代方案中,与现有风扇并联安装第二个主风扇(系统)被确定为最佳操作解决方案,并被选择实施。但是,通风回路的位置和预期的几何形状都不理想,一旦安装并调试了第二个风扇,就需要考虑两个风扇的运行情况。本文介绍了用于估算当前风扇和新风扇的工作点并证明并行安装附加主风扇的合理性的研究。考虑到风扇的位置和位置的特定几何形状,还进行了另一次计算流体动力学研究,以验证工作点,以确保风扇稳定运行。 (C)2015 Elsevier Ltd.保留所有权利。

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