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首页> 外文期刊>Interpretation >Combining surface-wave phase-velocity dispersion curves and full microtremor horizontal-to-vertical spectral ratio for subsurface sedimentary site characterization
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Combining surface-wave phase-velocity dispersion curves and full microtremor horizontal-to-vertical spectral ratio for subsurface sedimentary site characterization

机译:结合表面波相速度色散曲线和完整的微震水平-垂直光谱比来表征地下沉积点

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摘要

We compute seismic velocity profiles by a combined inversion of surface-wave phase-velocity dispersion curves together with the full spectrum of the microtremor horizontal-to-vertical (H/V) spectral ratio at two sediment-covered sites in Germany. The sediment deposits are approximately 100 m thick at the first test site and approximately 400 m thick at the second test site. We have used an extended physical model based on the diffuse wavefield assumption for the interpretation of the observed microtremor H/V spectral ratio. The extension includes the interpretation of the microtremor H/V spectral ratio observed at depth (in boreholes). This full-wave-field approach accounts for the energy contribution from the body and surface waves, and thus it allows for inverting the properties of the shallow subsurface. We have obtained the multimode phase velocity dispersion curves from an independent study, and a description of the extracted branches and their interpretation was developed. The inversion results indicate that the combined approach using seismic ambient noise and actively generated surface-wave data will improve the accuracy of the reconstructed near-surface velocity model, a key step in microzonation, geotechnical engineering, seismic statics corrections, and reservoir imaging.
机译:我们通过组合反演表面波相速度色散曲线以及德国两个沉积物覆盖地点的微震水平-垂直(H / V)光谱比的全谱来计算地震速度剖面。沉积物在第一个测试点的厚度约为100 m,在第二个测试点的厚度约为400 m。我们已经使用了基于弥散波场假设的扩展物理模型来解释观测到的微震H / V谱比。扩展包括对在深处(在井眼中)观察到的微震H / V光谱比的解释。这种全波场方法考虑了来自体波和表面波的能量贡献,因此可以反转浅层地下的属性。我们通过独立研究获得了多模相速度色散曲线,并对提取的分支及其解释进行了描述。反演结果表明,结合使用地震环境噪声和主动生成的面波数据的方法将提高重建的近地表速度模型的准确性,这是微区划,岩土工程,地震静校正和油藏成像的关键步骤。

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