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3-D cross-gradient joint inversion of seismic refraction and DC resistivity data

机译:地震折射和直流电阻率数据的3-D交叉梯度联合反演

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We present a 3-D cross-gradient joint inversion algorithm for seismic refraction and DC resistivity data. The structural similarity between seismic slowness and resistivity models is enforced by a cross-gradient term in the objective function that also includes misfit and regularization terms. A limited memory quasi-Newton approach is used to perform the optimization of the objective function. To validate the proposed methodology and its implementation, tests were performed on a typical archaeological geophysical synthetic model. The results show that the inversion model and physical parameters estimated by our joint inversion method are more consistent with the true model than those from single inversion algorithm. Moreover, our approach appears to be more robust in conditions of noise. Finally, the 3-D cross-gradient joint inversion algorithm was applied to the field data from Lin_an ancient city site in Hangzhou of China. The 3-D cross-gradient joint inversion models are consistent with the archaeological excavation results of the ancient city wall remains. However, by single inversion, seismic slowness model does not show the anomaly of city wall remains and resistivity model does not fit well with the archaeological excavation results. Through these comparisons, we conclude that the proposed algorithm can be used to jointly invert 3-D seismic refraction and DC resistivity data to reduce the uncertainty brought by single inversion scheme. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出了一种用于地震折射和直流电阻率数据的三维交叉梯度联合反演算法。地震衰减和电阻率模型之间的结构相似性在客观函数中的交叉梯度术语强制执行,该函数也包括错入和正则化术语。限量内存准牛顿方法用于执行目标函数的优化。为了验证所提出的方法及其实施,对典型的考古地球物理合成模型进行了测试。结果表明,通过我们的联合反演方法估计的反转模型和物理参数与真实模型比单一反转算法的模型更符合。此外,我们的方法在噪音条件下似乎更加强大。最后,将3-D交叉梯度联合反演算法应用于中国杭州林_古城现场的现场数据。 3-D交叉梯度联合反演模型与古城墙的考古挖掘结果一致。然而,通过单反转,地震慢化模型没有显示城市墙壁的异常,电阻率模型与考古挖掘结果不合适。通过这些比较,我们得出结论,该算法可用于共同反转3-D地震折射和直流电阻率数据,以减少单一反转方案所带来的不确定性。 (c)2017 Elsevier B.v.保留所有权利。

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