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The scattering potential of partial derivative wavefields in 3-D elastic orthorhombic media: an inversion prospective

机译:3-D弹性正交各向异性介质中偏导波场的散射势:反演前瞻

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摘要

Multiparameter full waveform inversion (FWI) applied to an elastic orthorhombic model description of the subsurface requires in theory a nine-parameter representation of each pixel of the model. Even with optimal acquisition on the Earth surface that includes large offsets, full azimuth, and multicomponent sensors, the potential for trade-off between the elastic orthorhombic parameters are large. The first step to understanding such trade-off is analysing the scattering potential of each parameter, and specifically, its scattering radiation patterns. We investigate such radiation patterns for diffraction and for scattering from a horizontal reflector considering a background isotropic model. The radiation patterns show considerable potential for trade-off between the parameters and the potentially limited resolution in their recovery. The radiation patterns of C11, C22, and C33 are well separated so that we expect to recover these parameters with limited trade-offs. However, the resolution of their recovery represented by recovered range of model wavenumbers varies between these parameters. We can only invert for the short wavelength components (reflection) of C33 while we can mainly invert for the long wavelength components (transmission) of the elastic coefficients C11 and C22 if we have large enough offsets. The elastic coefficients C13, C23, and C12 suffer from strong trade-offs with C55, C44, and C66, respectively. The trade-offs between C13 and C55, as well as C23 and C44, can be partially mitigated if we acquire P–SV and SV–SV waves. However, to reduce the trade-offs between C12 and C66, we require credible SH–SH waves. The analytical radiation patterns of the elastic constants are supported by numerical gradients of these parameters.
机译:理论上,应用于地下弹性正交投影模型描述的多参数全波形反演(FWI)需要模型中每个像素的九参数表示。即使在包括大偏移量,全方位角和多分量传感器的地球表面上进行最佳采集,在弹性正交斜度参数之间进行权衡的可能性仍然很大。理解这种折衷的第一步是分析每个参数的散射势,尤其是其散射辐射图。考虑背景各向同性模型,我们研究了这种辐射图的衍射和水平反射器的散射。辐射方向图显示出在参数之间可能存在折衷的巨大潜力,并且在恢复过程中分辨率可能受到限制。 C11,C22和C33的辐射方向图很好地分开了,因此我们希望在有限的权衡下恢复这些参数。但是,由模型波数的恢复范围表示的恢复分辨率在这些参数之间有所不同。如果我们有足够大的偏移量,我们只能对C33的短波长分量(反射)进行反演,而我们主要可以对弹性系数C11和C22的长波长分量(透射)进行反演。弹性系数C13,C23和C12分别要与C55,C44和C66进行权衡。如果我们获取P–SV和SV–SV波,则C13和C55以及C23和C44之间的权衡可以部分缓解。但是,为了减少C12和C66之间的折衷,我们需要可靠的SH-SH波。这些参数的数值梯度支持弹性常数的分析辐射方向图。

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