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Which geoelectric array sees the deepest in a noisy environment? Depth of detectability values of multielectrode systems for various two-dimensional models

机译:在嘈杂的环境中,哪个地电阵列最深?各种二维模型的多电极系统可检测值的深度

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摘要

In an urban environment, the two dominating difficulties of any geophysical measurement are as follows: (1) the area available for measurements is restricted, therefore, the length of the geoelectric layout is also limited; (2) the noise level is high, and noise diminishes the maximum depth at which any subsurface target can be detected. For this article, the depth of detectability values (i.e. the maximum depth values at which useful information can still be obtained about a given inhomogeneity at a given noise level) were determined from results of two-dimensional numerical model computations assuming multielectrode (electrical resistivity tomography) measurements. Depth of detectability studies were carried out for six different geoelectric arrays, assuming various noise levels. It was found that the depth of detectability is both array and model dependent. Therefore, in a field study it is advisable to select the array which has the greatest possible depth of detectability values for the given model at the given noise level. When there is no a priori assumption about the subsurface model, either the pole-dipole (P-DP) array or the dipole axial (DP-ax) array is recommended as a default selection, because for most of the studied models they provide the largest depth of detectability values. A twofold increase in the noise level may lead to a decrease of approximately one half in the depth of detectability itself.
机译:在城市环境中,任何地球物理测量的两个主要困难如下:(1)可测量的区域受到限制,因此,地电布局的长度也受到限制; (2)噪声水平很高,并且噪声会减小可检测到任何地下目标的最大深度。对于本文,可检测深度值(即在给定噪声水平下仍可获得关于给定不均匀性的有用信息的最大深度值)是根据假设多电极(电阻层析成像)的二维数值模型计算结果确定的) 测量。假设各种噪声水平,对六个不同的地电阵列进行了可探测性研究的深度。发现可检测性的深度与阵列和模型有关。因此,在现场研究中,建议在给定的噪声水平下,选择具有给定模型最大可检测值深度的阵列。当没有关于地下模型的先验假设时,建议将极-偶极子(P-DP)阵列或偶极子轴向(DP-ax)阵列作为默认选择,因为对于大多数研究的模型而言,它们都提供了可检测性值的最大深度。噪声水平的两倍提高可能会导致可检测性深度本身降低大约一半。

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