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首页> 外文期刊>Journal of applied mathematics >Method of Integral Equations for the Problem of Electrical Tomography in a Medium with Ground Surface Relief
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Method of Integral Equations for the Problem of Electrical Tomography in a Medium with Ground Surface Relief

机译:地表介质中电层析成像问题的积分方程法

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The direct task of the subsurface exploration of a homogeneous medium with surface relief by the resistivity method is analyzed. To calculate the resistivity field for such a medium, the method of integral equations was successfully applied for the first time. The corresponding integral equation for the density of secondary current sources on the surface of the medium was established. The method of computational grid construction, adapted to the characteristics of the surface relief, was developed for the numerical solution of the integral equation. This method enables the calculation of the resistivity field of a point source on a surface that is not smooth and allows for steep ledges. Numerical examples of the calculation of resistivity fields and apparent resistivity are shown. The anomalies of apparent resistivity arising from the deviation of the surface shape from a flat medium were quantitatively established as model examples. Calculations of apparent resistivity for the direct current sounding method were carried out using modifications of the electrical tomography approach.
机译:分析了通过电阻率法对具有表面起伏的均质介质进行地下勘探的直接任务。为了计算这种介质的电阻率场,首次成功地使用了积分方程法。建立了介质表面上次级电流源密度的相应积分方程。针对积分方程的数值解,开发了一种适合表面起伏特征的计算网格构造方法。此方法可以计算不光滑的表面上的点源的电阻率场,并允许陡峭的壁架。显示了电阻率场和视电阻率计算的数值示例。由表面形状与扁平介质的偏差引起的视电阻率异常被定量建立为模型实例。直流测深法的视在电阻率的计算是使用电子断层扫描方法的改进方法进行的。

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