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首页> 外文期刊>Journal of environmental & engineering geophysics >A Comparison of Electrical Resistivity, Ground Penetrating Radar and Seismic Refraction Results at a River Terrace Site
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A Comparison of Electrical Resistivity, Ground Penetrating Radar and Seismic Refraction Results at a River Terrace Site

机译:河阶地电阻率,探地雷达和地震折射结果的比较

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摘要

Electrical resistivity imaging (ERI), ground penetrating radar (GPR) and seismic refraction (SRF) profiles were repeated over three lines on a terrace of the Bow River,, The site had a resistive gravel layer overlying mudstone bedrock with horizontal transitions to lacustrine and overbank deposits. Electrical resistivity results were best for determining changes in sediment types and detecting boundaries, but the ERI smoothness constraint blurred the location of the boundaries The GPR gave the most resolution and showed internal structures that the other methods did not image,. The GPR signal was severely attenuated in several areas where the surficial sediments became too conductive because of a fine grained component,. The seismic refraction inversion provided good reproduction of the bedrock interface, but it did not detect changes in the composition of the surficial sediments. It also required the introduction of a low velocity surficial layer not indicated by the other methods that may be related to the increase in effective stress with depth. Jointly interpreting the three data sets gives a more reliable and less ambiguous interpretation than any single method The data may be useful to test joint inversion algorithms and are available for download.
机译:在Bow河阶地上的三条线路上重复进行了电阻率成像(ERI),探地雷达(GPR)和地震折射(SRF)剖面图。该场地的电阻砾石层覆盖在泥岩基岩上,并向湖相和湖面水平过渡。超额存款。电阻率结果最适合确定沉积物类型的变化和检测边界,但是ERI平滑度约束模糊了边界的位置。GPR分辨率最高,并且显示出其他方法无法成像的内部结构。在一些区域,由于细颗粒成分,表面沉积物变得过于导电,GPR信号被严重衰减。地震折射反演提供了基岩界面的良好再现,但未检测到表层沉积物成分的变化。还需要引入低速表面层,而其他方法未指出,这可能与有效应力随深度的增加有关。与任何单一方法相比,联合解释这三个数据集将提供更可靠和较少歧义的解释。这些数据可能对测试联合反演算法有用,并且可以下载。

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