首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Time-domain-induced polarization: Full-decay forward modeling and 1D laterally constrained inversion of Cole-Cole parameters
【24h】

Time-domain-induced polarization: Full-decay forward modeling and 1D laterally constrained inversion of Cole-Cole parameters

机译:时域感应极化:全衰变正演模拟和Cole-Cole参数的一维横向约束反演

获取原文
获取原文并翻译 | 示例
           

摘要

Time-domain-induced polarization has significantly broadened its field of reference during the last decade, from mineral exploration to environmental geophysics, e.g., for clay and peat identification and landfill characterization. Though, insufficient modeling tools have hitherto limited the use of time-domaininduced polarization for wider purposes. For these reasons, a new forward code and inversion algorithm have been developed using the full-time decay of the induced polarization response, together with an accurate description of the transmitter waveform and of the receiver transfer function, to reconstruct the distribution of the Cole-Cole parameters of the earth. The accurate modeling of the transmitter waveform had a strong influence on the forward response, and we showed that the difference between a solution using a step response and a solution using the accurate modeling often is above 100%. Furthermore, the presence of low-pass filters in time-domain-induced polarization instruments affects the early times of the acquired decays (typically up to 100 ms) and has to be modeled in the forward response to avoid significant loss of resolution. The developed forward code has been implemented in a 1D laterally constrained inversion algorithm that extracts the spectral content of the induced polarization phenomenon in terms of the Cole- Cole parameters. Synthetic examples and field examples from Denmark showed a significant improvement in the resolution of the parameters that control the induced polarization response when compared to traditional integral chargeability inversion. The quality of the inversion results has been assessed by a complete uncertainty analysis of the model parameters; furthermore, borehole information confirm the outcomes of the field interpretations. With this new accurate code in situ time-domaininduced polarization measurements give access to new applications in environmental and hydrogeophysical investigations, e.g., accurate landfill delineation or on the relation between Cole-Cole and hydraulic parameters.
机译:在过去十年中,时域诱发的极化极大地拓宽了其研究范围,从矿物勘探到环境地球物理,例如用于粘土和泥炭的识别以及垃圾填埋场的表征。但是,迄今为止,建模工具不足,限制了将时域感应极化用于更广泛的用途。由于这些原因,利用感应极化响应的全时衰减,连同对发射器波形和接收器传递函数的准确描述,开发了一种新的前向码和反演算法,以重构Cole-地球的油菜参数。发射器波形的精确建模对前向响应有很大影响,我们表明,使用阶跃响应的解决方案与使用精确建模的解决方案之间的差异通常超过100%。此外,时域感应极化仪器中低通滤波器的存在会影响采集衰减的早期(通常长达100 ms),因此必须在正向响应中建模以避免分辨率的明显损失。已开发的前向代码已在一维横向约束反演算法中实现,该算法根据Cole-Cole参数提取了感应极化现象的光谱内容。与传统的积分充电率反演相比,丹麦的合成示例和现场示例显示,控制感应极化响应的参数的分辨率有了显着提高。反演结果的质量已通过对模型参数的完全不确定性分析进行了评估;此外,井眼信息证实了现场解释的结果。有了这种新的精确代码,时域引起的极化测量就可以在环境和水文地球物理研究中获得新的应用,例如精确的填埋场轮廓描述或Cole-Cole与水力参数之间的关系。

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