首页> 外文期刊>Near surface geophysics >Real-time electrical monitoring of reagent delivery during a subsurface amendment experiment
【24h】

Real-time electrical monitoring of reagent delivery during a subsurface amendment experiment

机译:地下修饰实验过程中试剂输送的实时电监控

获取原文
获取原文并翻译 | 示例
           

摘要

An electrical resistivity monitoring survey was conducted on a mine heap to track reagent move-ment during high-pressure injections. The injections were designed to increase the dissolution of metallic gold from low-grade ore and enhance recovery after surface leaching had ceased. The main objective of the geoelectrical monitoring was to observe the effectiveness of the injection technique and provide feedback to optimize injection parameters in real time. Real-time assessment was achieved by monitoring the raw output current and transfer resistance on a network of borehole electrodes installed around the injection well. It was demonstrated that the output current increased significantly on particular borehole electrodes after commencement of reagent injection, when the wetting front arrived at the electrodes. When injection ceased, the electrical current returned to the initial baseline current values. The timing and distribution of the electrodes demonstrating this behaviour varied with injection depth. The internal structure of the heap was likely a controlling factor in reagent movement. Resistance, converted to apparent resistivity, was also shown to change significantly in the region near the injection. Verification of the real-time assessment was conducted with post-injection time-lapse 3D tomographic inversion. While inverse modelling provides a truer 3D representation of reagent injection, the cost was shown to be a time-lag of 3.5 days to complete the modelling. The simplicity of monitoring the raw current output and voltage can make this a powerful tool for real-time tracking of fluid movement in the subsurface.
机译:在矿山堆上进行了电阻率监测调查,以跟踪高压注入过程中试剂的移动。注入的目的是增加从低品位矿石中溶解金属金的能力,并在表面浸出停止后提高采收率。地电监测的主要目的是观察注入技术的有效性,并提供反馈以实时优化注入参数。通过监视安装在注入井周围的井眼电极网络上的原始输出电流和传输电阻,可以实现实时评估。结果表明,在开始注入试剂后,当润湿前沿到达电极时,特定钻孔电极上的输出电流显着增加。当注入停止时,电流返回到初始基准电流值。证明这种行为的电极的时间和分布随注入深度而变化。堆的内部结构可能是试剂移动的控制因素。转换为视电阻率的电阻在注入附近区域也显示出显着变化。实时评估的验证是通过注射后延时3D层析成像反演进行的。逆建模提供了更真实的3D试剂注入表示,但完成建模所需的时间为3.5天。监视原始电流输出和电压的简便性使其成为实时跟踪地下流体运动的强大工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号