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Mono-component acoustic full waveform inversion with converted vector wavefields in vertically transverse isotropic media

机译:垂直横观各向同性介质中转换矢量波场的单分量声波全波形反演

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摘要

Full waveform inversion (FWI) with acoustic approximation for VTI media have been performed with different modeling techniques. The decomposed equation with monocomponent has an advantages of computational efficiency and no S-wave artifact in terms of forward modeling. However, the scattering pattern using single wave equation is quite different from the elastic scattering theory. In this abstract, we propose using vector wavefields to compute the gradient in the FWI algorithm. By converting the monocomponent (pressure) source and receiver wavefields into the two-component particle displacements using the equation of motion on the staggered grids, we can obtain vector virtual sources to compute the gradient direction.
机译:采用不同的建模技术对VTI介质进行了声波近似全波形反演(FWI)。单组分分解方程具有计算效率高、正演模拟无横波伪影等优点。然而,单波方程的散射模式与弹性散射理论有很大不同。在本文摘要中,我们建议在FWI算法中使用矢量波场来计算梯度。通过使用交错网格上的运动方程将单分量(压力)源和接收器波场转换为双分量粒子位移,我们可以获得矢量虚拟源来计算梯度方向。

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