首页> 外文期刊>Geophysical Prospecting >A first application of a marine inductive source electromagnetic configuration with remote electric dipole receivers: Palinuro Seamount, Tyrrhenian Sea
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A first application of a marine inductive source electromagnetic configuration with remote electric dipole receivers: Palinuro Seamount, Tyrrhenian Sea

机译:带有远程电偶极接收器的船用感应源电磁配置的首次应用:第勒尼安海Palinuro Seamount

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摘要

We study a new marine electromagnetic configuration that consists of a ship-towed inductive source transmitter and a series of remote electric dipole receivers placed on the seafloor. The approach was tested at the Palinuro Seamount in the southern Tyrrhenian Sea, at a site where massive sulphide mineralization has been previously identified by shallow drilling. A 3D model of the Palinuro study area was created using bathymetry data, and forward modelling of the electric field diffusion was carried out using a finite volume method. These numerical results suggest that the remote receivers can theoretically detect a block of shallowly buried conductive material at up to approximate to 100m away when the transmitter is located directly above the target. We also compared the sensitivity of the method using either a horizontal loop transmitter or a vertical loop transmitter and found that when either transmitter is located directly above the mineralized zone, the vertical loop transmitter has sensitivity to the target at a farther distance than the horizontal loop transmitter in the broadside direction by a few tens of metres. Furthermore, the vertical loop transmitter is more effective at distinguishing the seafloor conductivity structure when the vertical separation between transmitter and receiver is large due to the bathymetry. As a horizontal transmitter is logistically easier to deploy, we conducted a first test of the method with a horizontal transmitter. Apparent conductivities are calculated from the electric field transients recorded at the remote receivers. The analysis indicates higher apparent seafloor conductivities when the transmitter is located near the mineralized zone. Forward modelling suggests that the best match to the apparent conductivity data is obtained when the mineralized zone is extended southward by 40m beyond the zone of previous drilling. Our results demonstrate that the method adds value to the exploration and characterization of seafloor massive sulphide deposits.
机译:我们研究了一种新的海洋电磁配置,该配置由船载感应源发射器和放置在海底的一系列远程电偶极子接收器组成。该方法已在第勒尼安海南部的Palinuro海山进行了测试,该位置以前曾通过浅层钻探发现大量硫化物矿化。使用测深数据创建了Palinuro研究区域的3D模型,并使用有限体积方法对电场扩散进行了正向建模。这些数值结果表明,当发射器位于目标正上方时,远程接收器理论上可以检测到大约100m处的浅埋导电材料块。我们还比较了使用水平回路发射机或垂直回路发射机的方法的灵敏度,发现当任一发射机位于矿化区正上方时,垂直回路发射机对目标的灵敏度比水平回路更远发射机沿宽边方向移动了几十米。此外,当由于测深法导致发射器和接收器之间的垂直距离较大时,垂直回路发射器在区分海底电导率结构方面更有效。由于水平变送器在逻辑上更易于部署,因此我们对水平变送器进行了首次测试。根据在远程接收器处记录的电场瞬变来计算表观电导率。分析表明,当变送器位于矿化区附近时,表观海底电导率较高。正演模型表明,当矿化区向南延伸超过先前钻探区40m时,可获得与表观电导率数据的最佳匹配。我们的结果表明,该方法为海底块状硫化物矿床的勘探和表征增加了价值。

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  • 来源
    《Geophysical Prospecting》 |2018年第7期|1415-1432|共18页
  • 作者单位

    Colorado Sch Mines, Dept Geophys, 1500 Illinois St, Golden, CO 80401 USA;

    GEOMAR, Helmholtz Ctr Ocean Res, Geodynam Dept, Wischhofstr 1-3, D-24148 Kiel, Germany;

    GEOMAR, Helmholtz Ctr Ocean Res, Geodynam Dept, Wischhofstr 1-3, D-24148 Kiel, Germany;

    Colorado Sch Mines, Dept Geophys, 1500 Illinois St, Golden, CO 80401 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D; Electromagnetics; Marine;

    机译:3D;电磁学;海洋;

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