首页> 外文期刊>Geophysical Prospecting >Signal detectability of marine electromagnetic methods in the exploration of resistive targets
【24h】

Signal detectability of marine electromagnetic methods in the exploration of resistive targets

机译:海洋电磁方法在电阻目标勘探中的信号可探测性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We compare selected marine electromagnetic methods for sensitivity to the presence of relatively thin resistive targets (e.g., hydrocarbons, gas hydrates, fresh groundwater, etc.). The study includes the conventional controlled-source electromagnetic method, the recently introduced transient electromagnetic prospecting with vertical electric lines method, and the novel marine circular electric dipole method, which is still in the stage of theoretical development. The comparison is based on general physical considerations, analytical (mainly asymptotic) analysis, and rigorous one-dimensional and multidimensional forward modelling. It is shown that transient electromagnetic prospecting with vertical electric lines and marine circular electric dipole methods represent an alternative to the conventional controlled-source electromagnetic method at shallow sea, where the latter becomes less efficient due to the air-wave phenomenon. Since both former methods are essentially short-offset time-domain techniques, they exhibit a much better lateral resolution than the controlled-source electromagnetic method in both shallow sea and deep sea. The greatest shortcoming of the transient electromagnetic prospecting with vertical electric lines and marine circular electric dipole methods comes from the difficulties in accurately assembling the transmitter antenna within the marine environment. This makes these methods significantly less practical than the controlled-source electromagnetic method. Consequently, the controlled-source electromagnetic method remains the leading marine electromagnetic technique in the exploration of large resistive targets in deep sea. However, exploring laterally small targets in deep sea and both small and large targets in shallow sea might require the use of the less practical transient electromagnetic prospecting with vertical electric lines and/or marine circular electric dipole method as a desirable alternative to the controlled-source electromagnetic method.
机译:我们比较了选定的海洋电磁方法对相对较薄的电阻目标(例如碳氢化合物,天然气水合物,新鲜地下水等)的敏感性。研究包括常规的受控源电磁法,最近引入的垂直电线法瞬变电磁勘探以及新颖的船用圆形电偶极子法,这些方法仍处于理论发展阶段。比较是基于一般物理考虑,分析(主要是渐近)分析以及严格的一维和多维正向建模。结果表明,用垂直电线和海洋圆形电偶极子法进行瞬态电磁勘探是浅海传统控制源电磁方法的一种替代方法,后者由于空气波现象而使效率降低。由于前两种方法本质上都是短偏移时域技术,因此与浅海和深海中的受控源电磁方法相比,它们展现出更好的横向分辨率。用垂直电线和海洋圆形电偶极子方法进行瞬态电磁勘探的最大缺点是难以在海洋环境中准确地组装发射机天线。这使得这些方法远不如受控源电磁方法实用。因此,在深海中大型电阻目标的勘探中,控制源电磁法仍是领先的海洋电磁技术。然而,在深海中探索横向小的目标,在浅海中探索大小的目标,都可能需要使用垂直线和/或海洋圆形电偶极子方法不太实用的瞬变电磁勘探方法,作为受控源的理想替代方案电磁法。

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