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Modelisations et inversions tri-dimensionnelles en prospections gravimetrique et electrique (French text).

机译:重力和电勘探的三维建模和反演(法文)。

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摘要

The aim of this thesis is the application of gravity and resistivity methods for mining prospecting. The objectives of the present study are: (1) to build a fast gravity inversion method to interpret surface data; (2) to develop a tool for modelling the electrical potential acquired at surface and in boreholes when the resistivity distribution is heterogeneous; and (3) to define and implement a stochastic inversion scheme allowing the estimation of the subsurface resistivity from electrical data.; The first technique concerns the elaboration of a three dimensional (3D) inversion program allowing the interpretation of gravity data using a selection of constraints such as the minimum distance, the flatness, the smoothness and the compactness. These constraints are integrated in a Lagrangian formulation. A multi-grid technique is also implemented to resolve separately large and short gravity wavelengths. The subsurface in the survey area is divided into juxtaposed rectangular prismatic blocks. The problem is solved by calculating the model parameters, i.e. the densities of each block. Weights are given to each block depending on depth, a priori information on density, and density range allowed for the region under investigation. The present code is tested on synthetic data. Advantages and behaviour of each method are compared in the 3D reconstruction. Recovery of geometry (depth, size) and density distribution of the original model is dependent on the set of constraints used. The best combination of constraints experimented for multiple bodies seems to be flatness and minimum volume for multiple bodies. The inversion method is tested on real gravity data.; The second tool developed in this thesis is a three-dimensional electrical resistivity modelling code to interpret surface and subsurface data. Based on the integral equation, it calculates the charge density caused by conductivity gradients at each interface of the mesh allowing an exact estimation of the potential. Modelling generates a huge matrix made of Green's functions which is stored by using the method of pyramidal compression.; The third method consists to interpret electrical potential measurements from a non-linear geostatistical approach including new constraints. This method estimates an analytical covariance model for the resistivity parameters from the potential data. (Abstract shortened by UMI.)
机译:本文的目的是将重力和电阻率方法应用于采矿勘探中。本研究的目的是:(1)建立一种快速的重力反演方法来解释地表数据; (2)开发一种工具,用于模拟电阻率分布不均匀时在地表和井眼中获得的电势; (3)定义并实施一种随机反演方案,允许根据电学数据估算地下电阻率。第一项技术涉及三维(3D)反演程序的详细说明,该程序允许使用限制条件的选择来解释重力数据,例如最小距离,平坦度,平滑度和紧凑度。这些约束条件被整合到拉格朗日公式中。还实现了多网格技术,以分别解析大和短重力波长。调查区域的地下分为并列的矩形棱柱体。通过计算模型参数即每个块的密度来解决该问题。根据深度,密度的先验信息以及所研究区域允许的密度范围,为每个块赋予权重。本代码已对综合数据进行了测试。在3D重建中比较了每种方法的优点和行为。原始模型的几何形状(深度,大小)和密度分布的恢复取决于所使用的约束集。对多个实体进行实验的约束的最佳组合似乎是平坦度和多个实体的最小体积。反演方法在真实重力数据上进行了测试。本文开发的第二种工具是用于解释地表和地下数据的三维电阻率建模代码。基于积分方程,它可以计算出网格每个界面上的电导率梯度引起的电荷密度,从而可以精确估算电势。建模会生成一个由格林函数构成的巨大矩阵,该矩阵通过使用金字塔压缩方法进行存储。第三种方法包括从非线性地统计方法(包括新约束)解释电势测量。该方法根据电势数据估算电阻率参数的解析协方差模型。 (摘要由UMI缩短。)

著录项

  • 作者

    Boulanger, Olivier.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Geophysics.; Engineering Mining.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 242 p.
  • 总页数 242
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学 ; 矿业工程 ;
  • 关键词

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