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The inverse problem of Schlumberger resistivity sounding measurements by ridge regression

机译:用脊线回归法测量斯伦贝谢电阻率测深的反问题

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When the number of soil layers exceeds two, the determination of the resistivity and depth (ρ_i, h_i) for layer # i from a resistivity sounding becomes more difficult. The proposed method is based on the identification of the theoretical resistivity transform 'T' for n-layer from the expression of the voltage distribution around an electrode in a multi-layer soil. Vertical soundings in the field measure a series of apparent resistivity values at a constant increment Δx of the logarithm of electrode spacing. We obtain the filter coefficient series. And thus, the resistivity transform can be easily derived from the experimental data by the application of linear electric filter theory. The problem of direct interpretation of apparent resistivity curves from horizontally layered earth models is solved by using the ridge regression estimator. This paper presents a methodology for estimation of soil parameters from Schlumberger measurements. The procedure has been applied using field test data and has been shown to provide a satisfactory soil model.
机译:当土壤层数超过两层时,根据电阻率测深确定层#i的电阻率和深度(ρ_i,h_i)变得更加困难。所提出的方法是基于从多层土壤中电极周围的电压分布表达式确定n层的理论电阻率变换“ T”。现场的垂直测深以电极间距对数的恒定增量Δx测量一系列视在电阻率值。我们获得滤波器系数系列。因此,通过应用线性电滤波器理论,可以很容易地从实验数据中得出电阻率变换。通过使用脊线回归估计器解决了直接解释水平分层地球模型的视电阻率曲线的问题。本文提出了一种通过斯伦贝谢测量方法估算土壤参数的方法。该程序已通过现场测试数据进行了应用,并已显示出可提供令人满意的土壤模型。

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