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Application of the CSAMT method to groundwater exploration in a metropolitan environment

机译:CSAMT方法在大城市环境下的地下水勘探中的应用

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Urban and suburban areas of large cities impose great challenges to geophysical surveys because of high-level ambient noise. This is particularly true for controlled source audio-frequency magnetotellurics (CSAMT) because the frequency range of the method overlaps those of many civil and industrial noises. Among the different types of noise sources, perhaps the most noticeable one is the 50-Hz power grid. We have successfully applied the CSAMT method for groundwater exploration in a suburban Beijing area where the ambient noise level is about three times as high as would normally be encountered. Several steps were taken in assuring quality use of the method, including careful survey design, adequate frequency range selection, and large transmitter dipole length and transmitter-receiver spacing. The next step was static effect removal through low-pass filtering and topography correction to remove any nonhorizontal component in the electric field measurement. Finally, a 1D inversion method was applied to construct an (apparent) resistivity cross section. The survey revealed a low-resistivity, waterbearing layer sandwiched between a surface cover layer and the bedrock. The available well data suggested that the depth of the bedrock was accurately mapped, to within about 2 m, at a depth level of 150–165 m.
机译:由于高水平的环境噪声,大城市的城市和郊区对地球物理调查提出了巨大挑战。对于受控源音频大地电磁(CSAMT)尤其如此,因为该方法的频率范围与许多民用和工业噪声的频率范围重叠。在不同类型的噪声源中,也许最引人注目的是50 Hz电网。我们已经成功地将CSAMT方法应用于北京郊区的地下水勘探,该地区的环境噪声水平大约是通常遇到的三倍。为确保使用该方法的质量,已采取了几个步骤,包括仔细的勘测设计,适当的频率范围选择以及较大的发射器偶极长度和发射器-接收器间距。下一步是通过低通滤波和形貌校正消除静电效应,以消除电场测量中的任何非水平分量。最后,采用一维反演方法构造(视在)电阻率截面。调查发现,低电阻率的含水层夹在表面覆盖层和基岩之间。现有的井数据表明,基岩的深度在150–165 m的深度水平上已精确映射到2 m以内。

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