首页> 外文期刊>Geophysical Prospecting >A parallel computing thin-sheet inversion algorithm for airborne time-domain data utilising a variable overburden
【24h】

A parallel computing thin-sheet inversion algorithm for airborne time-domain data utilising a variable overburden

机译:利用可变覆盖量的机载时域数据并行计算薄板反演算法

获取原文
获取原文并翻译 | 示例
           

摘要

Accurate modelling of the conductivity structure of mineralisations can often be difficult. In order to remedy this, a parametric approach is often used. We have developed a parametric thin-sheet code, with a variable overburden. The code is capable of performing inversions of time-domain airborne electromagnetic data, and it has been tested successfully on both synthetic data and field data. The code implements an integral solution containing one or more conductive sheets, buried in a half-space with a laterally varying conductive overburden. This implementation increases the area of applicability compared to, for example, codes operating in free space, but it comes with a significant increase in computational cost. To minimise the cost, the code is parallelised using OpenMP and heavily optimised, which means that inversions of field data can be performed in hours on multiprocessor desktop computers. The code models the full system transfer function of the electromagnetic system, including variable flight height. The code is demonstrated with a synthetic example imitating a mineralisation buried underneath a conductive meadow. As a field example, the Valen mineral deposit, which is a graphite mineral deposit located in a variable overburden, is successfully inverted. Our results match well with previous models of the deposit; however, our predicted sheet remains inconclusive. These examples collectively demonstrate the effectiveness of our thin-sheet code.
机译:通常很难对矿化的电导率结构进行精确建模。为了解决这个问题,经常使用参数化方法。我们开发了带有可变覆盖层的参数化薄片代码。该代码能够执行时域机载电磁数据的反演,并且已经在合成数据和现场数据上成功进行了测试。该代码实现了一个整体解决方案,其中包含一个或多个导电片材,这些导电片材被掩埋在一个半空间中,且导电性覆盖层横向变化。与例如在自由空间中操作的代码相比,此实现增加了适用范围,但是它带来了计算成本的显着增加。为了最大程度地降低成本,该代码使用OpenMP进行了并行化并进行了优化,这意味着可以在多处理器台式计算机上数小时内完成字段数据的反转。该代码模拟了电磁系统的完整系统传递函数,包括可变的飞行高度。该代码通过一个合成示例进行了演示,该示例模仿了埋在导电草甸下的矿化层。作为现场实例,Valen矿床(位于可变覆盖层中的一种石墨矿床)已成功反转。我们的结果与先前的存款模型非常吻合;但是,我们的预测表尚无定论。这些示例共同证明了我们的薄片代码的有效性。

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