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Time-domain forward and inverse modeling of lossy soils with frequency-independent Q for near-surface applications

机译:具有频率独立Q的近地表有损土壤的时域正向和反向建模

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in this paper, we are concerned with a full-waveform-based methodology that allows the simultaneous imaging of the soil's stiffness and attenuating properties, using solely the soil's surficial response to probing waves. To date, field observations of small-strain wave attenuation in geomaterials at moderate spatial scales suggest that a commonly used metric of intrinsic and apparent attenuation, the seismic quality factor Q. is frequency-independent for a wide part of the frequency spectrum, including the frequency range of interest to seismic applications. We discuss first the forward simulation of waves in near-surface soil deposits directly in the time-domain using simplified models that adequately approximate nearly frequency-independent Q. To this end, we first review various attenuation models that aim at reproducing the frequency-independent Q behavior, and conclude, supported by site analyses, that, even though a generalized Maxwell body with eight Maxwell elements in parallel (GMB8) provides the best fit to frequency-independent Q. we favor a version of it with fewer parameters (GMB2), in order to reduce modeling complexity, while still retaining good agreement with the GMB8 model. We report on forward site analyses that lend credence to the choice of the GMB2 simplified model. We, then, use the GMB2 constitutive relation in the context of full-waveform inversion, and report on numerical experiments that lead to the imaging of the soil's properties in heterogeneous semi-infinite domains.
机译:在本文中,我们关注的是一种基于全波形的方法,该方法仅使用土壤对探测波的表面响应就可以同时对土壤的刚度和衰减特性进行成像。迄今为止,在中等空间尺度下对土工材料中小应变波衰减的现场观察表明,对于固有频谱和视在衰减的常用度量,地震质量因子Q.在很大范围的频谱中与频率无关,包括地震应用感兴趣的频率范围。我们首先讨论时域中使用近似近似于频率无关的Q的简化模型直接在时域内对近地表土壤沉积物中的波进行正演模拟。为此,我们首先回顾旨在再现频率无关的各种衰减模型。 Q行为,并得出结论,并得到现场分析的支持,即使具有八个平行的Maxwell元素的广义Maxwell体(GMB8)提供了与频率无关的Q的最佳拟合。我们更喜欢具有较少参数(GMB2)的版本,以降低建模的复杂性,同时仍与GMB8模型保持良好的一致性。我们对前瞻性站点分析进行了报告,这些分析为选择GMB2简化模型提供了依据。然后,我们在全波形反演的背景下使用GMB2本构关系,并报告了导致异质半无限域土壤性质成像的数值实验。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2012年第2012期|p.139-159|共21页
  • 作者单位

    School of Civil and Environmental Engineering Georgia Institute of Technology Atlanta GA 30332 USA;

    Department of Civil Architectural and Environmental Engineering The University of Texas at Austin Austin IX 78712 USA;

    Department of Civil Engineering Hongik University Seoul 121-791 Korea;

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