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Joint two-dimensional dc resistivity and seismic traveltime inversion with cross-gradients constraints.

机译:具有交叉梯度约束的联合二维直流电阻率和地震走时反演。

摘要

It is now common practice to perform collocated DC resistivity and seismic refraction surveys that complement each other in the search for more accurate characterization of the subsurface. Although conventional separate DC resistivity and seismic models can be diagnostic, we posit that better results can be derived from jointly estimated models. We make the assumption that both methods must be sensing the same underlying geology and have developed an innovative resistivity-velocity cross-gradients relationship to evaluate the structural features common to both methods. The cross-gradients function is incorporated as a constraint in a nonlinear least squares problem formulation, which is solved using the Lagrange multiplier method. The resultant iterative two-dimensional (2-D) joint inversion scheme is successfully applied to synthetic data (serving as validation tests here) and to field data from collocated DC resistivity and seismic refraction profiling experiments and also compared to conventional separate inversion results. The joint inversion results are shown to be superior to those from separate 2-D inversions of the respective data sets, since our algorithm leads to resistivity and velocity models with remarkable structural agreement.
机译:现在,通常的做法是进行并置的直流电阻率测量和地震折射测量,以便在寻找更准确的地下特征时相互补充。尽管可以使用常规的单独的直流电阻率模型和地震模型进行诊断,但是我们认为可以从联合估算的模型中得出更好的结果。我们假设这两种方法都必须感测相同的基础地质,并开发了一种创新的电阻率-速度交叉梯度关系来评估这两种方法共有的结构特征。交叉梯度函数作为约束并入非线性最小二乘问题公式,使用拉格朗日乘数法求解。所得的迭代二维(2-D)联合反演方案已成功应用于合成数据(此处用作验证测试)以及来自并置的直流电阻率和地震折射剖面实验的现场数据,并且还与常规的单独反演结果进行了比较。结果表明,联合反演结果优于相应数据集的单独二维反演结果,因为我们的算法导致电阻率和速度模型具有显着的结构一致性。

著录项

  • 作者

    Meju Maxwell; Gallardo Luis A.;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 20:14:21

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