...
首页> 外文期刊>Arabian journal of geosciences >A numerical comparison of enhancing horizontal resolution(EHR) technique utilizing 2D resistivity imaging
【24h】

A numerical comparison of enhancing horizontal resolution(EHR) technique utilizing 2D resistivity imaging

机译:利用二维电阻率成像增强水平分辨率(EHR)技术的数值比较

获取原文
获取原文并翻译 | 示例
           

摘要

The effectiveness of inversion apparent resistivity data to determine accurately the true resistivity distribution over 2D structures has been investigated using a common inversion scheme based on smoothness-constrained nonlinear least-squares optimization with enhancing horizontal resolution (EHR) technique by numerical simulation. The theoretical model generates in RES2DMOD software at specific distance and depth using Wenner, Wenner–Schlumberger, and pole–dipole arrays were inverted. The inversion model was compared with the original 2D model in RES2DINV software. The study model includes horizontal layering, vertical resolution, and horizontal two layers with different resistivity. Also, the response to variations in data density of these arrays was investigated. The study shows the best array suitable to be used in the survey was chosen for real data acquisition at the actual site. Subsequently, the results from borehole were used to verify the results of 2D resistivity imaging method with and without EHR technique. Saturated zone (0–40 Ω-m) was found scattered at the depth of 10–20 m. The borehole is located at 63 m at 2D resistivity imaging survey which shows at depth 10–20 m is sandy silt. Highly weathered sandstone was found at 6 m depth with resistivity value of 800 Ω-m and SPT N value of 20. The bedrock was found at 27 m depth with resistivity value of 3,000 Ω-m and SPT N value of 50. The application of 2D resistivity imaging with EHR technique indicate the ability of the proposed approach in terms of density, depth, and resistivity value of anomalous and layer in a computationally and numerically efficient manner and to exhibit good performance in the data inversion.
机译:已经使用一种常用的反演方案来研究反演视电阻率数据以准确确定2D结构上的真实电阻率分布的有效性,该方案基于通过数值模拟增强水平分辨率(EHR)的平滑度受限的非线性最小二乘法优化。通过使用Wenner,Wenner-Schlumberger和极-偶极子阵列倒置,可以在RES2DMOD软件中的特定距离和深度上生成理论模型。在RES2DINV软件中将反演模型与原始2D模型进行了比较。该研究模型包括水平分层,垂直分辨率和具有不同电阻率的水平两层。而且,研究了对这些阵列的数据密度变化的响应。研究表明,选择了适合在调查中使用的最佳阵列,以便在实际站点上进行实际数据采集。随后,将钻孔的结果用于验证采用和不采用EHR技术的二维电阻率成像方法的结果。发现饱和区(0–40Ω-m)分散在10–20 m的深度处。二维电阻率成像调查显示,钻孔位于63 m处,表明在10-20 m的深度处是砂质粉砂。在6 m深度处发现了高度风化的砂岩,电阻率值为800Ω-m,SPT N值为20。在27 m深度处发现了基岩,电阻率值为3,000Ω-m,SPT N值为50。用EHR技术进行的二维电阻率成像以计算和数值上有效的方式表明了该方法在异常,层的密度,深度和电阻率值方面的能力,并且在数据反演中表现出良好的性能。

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