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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Sinkhole detection using 2D full seismic waveform tomography
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Sinkhole detection using 2D full seismic waveform tomography

机译:使用2D全地震波形层析成像进行污水孔检测

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摘要

We have developed an application of 2D time-domain waveform tomography for detection of embedded sinkholes and anomalies. The measured seismic surface wavefields were inverted using a full-waveform inversion (FWI) technique, based on a finite-difference solution of 2D elastic wave equations and the Gauss-Newton inversion method. The key advantage of this approach is the ability to generate all possible wave propagation modes of seismic wavefields (body waves and Rayleigh waves) that are then compared with measured data to infer complex subsurface properties. The pressure-wave (P-wave) and shear-wave (S-wave) velocities are inverted independently and simultaneously. The FWI was applied to one synthetic and two real experimental data sets. The inversion results of synthetic data showed the useful capability of the waveform analysis in identifying an embedded void. The inversion results of real data sets showed that the waveform analysis was able to delineate (1) an embedded concrete culvert and (2) a complex profile with an embedded void and highly variable bedrock laterally and vertically. An independent invasive test (standard penetration test) was also conducted to verify the seismic test results.
机译:我们已经开发了2D时域波形层析成像技术,用于检测嵌入式水坑和异常。基于二维弹性波方程的有限差分解和高斯-牛顿反演方法,使用全波形反演(FWI)技术对测得的地震地表波场进行反演。这种方法的主要优点是能够生成地震波场的所有可能的波传播模式(体波和瑞利波),然后将其与测量数据进行比较以推断复杂的地下特性。压力波(P波)和剪切波(S波)的速度独立且同时反转。 FWI被应用于一个合成的和两个真实的实验数据集。合成数据的反演结果显示了波形分析在识别嵌入孔隙中的有用能力。真实数据集的反演结果表明,波形分析能够描绘出(1)嵌入式混凝土涵洞和(2)复杂的轮廓,该轮廓具有横向和垂直方向上的嵌入式空隙和高度可变的基岩。还进行了独立的侵入性测试(标准穿透测试)以验证地震测试结果。

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