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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Pseudo-full-waveform inversion of borehole GPR data using stochastic tomography
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Pseudo-full-waveform inversion of borehole GPR data using stochastic tomography

机译:随机层析成像法对钻孔GPR数据进行伪全波形反演

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Electromagnetic full-waveform tomography is computer intensive and requires good knowledge of antenna characteristics and ground coupling. As a result, ground-penetrating-radar tomography usually uses only the first wavelet's arrival time and amplitude data. We propose to improve the classical approach by inverting multiple slowness and attenuation fields using stochastic tomography. To do so, we model the slowness and attenuation covariance functions to generate geostatistical simulations that are conditional to the arrival times, amplitudes, slowness, and attenuation observed along boreholes. We combine slowness and attenuation fields to compute conductivity and permittivity fields from which we model synthetic radar traces using a finite-difference timedomain full-waveform algorithm. Modeled traces that best match the measured ones correspond to the computed conductivity and permittivity fields that correlate best with the true physical properties of the ground. We apply the method to a synthetic example with known electric properties. We show that a combination of stochastic tomography and full-waveform modeling allows a better selection of permittivity fields close to the reference field, at a reasonable computing cost.
机译:电磁全波形层析成像是计算机密集型技术,需要对天线特性和接地耦合有充分的了解。结果,探地雷达层析成像通常仅使用第一个小波的到达时间和振幅数据。我们建议通过使用随机层析成像法反转多个慢度场和衰减场来改进经典方法。为此,我们对慢度和衰减协方差函数进行建模,以生成地统计模拟,该模拟以沿井眼观测到的到达时间,振幅,慢度和衰减为条件。我们结合慢速场和衰减场来计算电导率和介电常数场,并使用有限差分时域全波形算法从中模拟合成雷达迹线。与测量值最匹配的建模迹线对应于计算出的电导率和介电常数场,它们与地面的真实物理特性最相关。我们将该方法应用于具有已知电特性的合成示例。我们表明,随机层析成像和全波形建模相结合,可以以合理的计算成本更好地选择接近参考场的介电常数场。

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