...
首页> 外文期刊>Geophysical Prospecting >Elimination of the water-layer response from multi-component source and receiver marine electromagnetic data
【24h】

Elimination of the water-layer response from multi-component source and receiver marine electromagnetic data

机译:消除了来自多组分源和接收器海洋电磁数据的水层响应

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the theory to eliminate from the recorded multi-component source, multi-component receiver marine electromagnetic measurements the effect of the physical source radiation pattern and the scattering response of the water-layer. The multi-component sources are assumed to be orthogonally aligned above the receivers at the seabottom. Other than the position of the sources, no source characteristics are required. The integral equation method, which for short is denoted by Lorentz water-layer elimination, follows from Lorentz' reciprocity theorem. It requires information only of the electromagnetic parameters at the receiver level to decompose the electromagnetic measurements into upgoing and downgoing constituents. Lorentz water-layer elimination replaces the water layer with a homogeneous half-space with properties equal to those of the sea-bed. The source is redatumed to the receiver depth.rnWhen the subsurface is arbitrary anisotropic but horizontally layered, the Lorentz water-layer elimination scheme greatly simplifies and can be implemented as deterministic multi-component source, multi-component receiver multidimensional decon-volution of common source gathers. The Lorentz deconvolved data can be further decomposed into scattering responses that would be recorded from idealized transverse electric and transverse magnetic mode sources and receivers. This combined electromagnetic field decomposition on the source and receiver side gives data equivalent to data from a hypothetical survey with the water-layer absent, with idealized single component transverse electric and transverse magnetic mode sources and idealized single component transverse electric and transverse magnetic mode receivers.rnWhen the subsurface is isotropic or transverse isotropic and horizontally layered, the Lorentz deconvolution decouples into pure transverse electric and transverse magnetic mode data processing problems, where a scalar field formulation of the multidimensional Lorentz deconvolution is sufficient. In this case single-component source data are sufficient to eliminate the water-layer effect.rnWe demonstrate the Lorentz deconvolution by using numerically modeled data over a simple isotropic layered model illustrating controlled-source electromagnetic hydrocarbon exploration. In shallow water there is a decrease in controlled-source electromagnetic sensitivity to thin resistors at depth. The Lorentz deconvolution scheme is designed to overcome this effect by eliminating the water-layer scattering, including the field's interaction with air.
机译:本文提出了从记录的多组分源,多组分接收器海洋电磁测量中消除物理源辐射方向图和水层散射响应的影响的理论。假设多分量源在海底的接收器上方正交对齐。除了源的位置以外,不需要源特性。积分方程法,简称为洛伦兹水层消除,是根据洛伦兹的互易定理得出的。它仅需要接收器级别的电磁参数信息,即可将电磁测量结果分解为上行和下行成分。洛伦兹(Lorentz)水层消除技术将水层替换为均质的半空间,其性能与海床相同。将源重新基准化为接收器深度。rn当地下为任意各向异性但水平分层时,洛伦兹水层消除方案将大大简化,并可作为确定性多分量源,多分量接收器多维反卷积实现聚集。洛伦兹反卷积数据可以进一步分解为散射响应,该散射响应将从理想的横向电和横向磁模式源和接收器记录下来。源和接收器侧的这种组合的电磁场分解提供的数据等效于不存在水层的假设调查的数据,其中包含理想化的单分量横向电模式和横向磁模式源以及理想化的单分量横向电模式和横向磁模式接收器。当地下为各向同性或横向各向同性并水平分层时,洛伦兹反褶积解耦为纯的横向电磁模式数据和横向磁模数据处理问题,其中多维洛伦兹反褶积的标量场公式就足够了。在这种情况下,单组分源数据足以消除水层效应。我们通过在简单的各向同性分层模型上使用数值模型化数据演示了Lorentz反褶积,该模型说明了控制源电磁油气勘探。在浅水中,对深处的薄电阻器的受控源电磁灵敏度会降低。洛伦兹反卷积方案旨在通过消除水层散射(包括磁场与空气的相互作用)来克服此影响。

著录项

  • 来源
    《Geophysical Prospecting》 |2009年第5期|897-918|共22页
  • 作者单位

    Department of Petroleum Engineering and Applied Geophysics, The Norwegian University of Science and Technology, N-7491 Trondheim, Norway;

    Department of Petroleum Engineering and Applied Geophysics, The Norwegian University of Science and Technology, N-7491 Trondheim, Norway StatoilHydro Research Centre, Postuttak, N-7005 Trondheim, Norway;

    StatoilHydro Research Centre, Postuttak, N-7005 Trondheim, Norway;

    Electro Magnetic GeoServices, Stiklestadveien 1, N-7041 Trondbeim, Norway;

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

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