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MULTIFREQUENCY VISCOACOUSTIC MODELING AND INVERSION

机译:多频粘声建模与反演

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Modeling and inversion for seismic wavefields that include the attenuation and phase dispersion effects of Q can be implemented in the space-frequency domain. The viscoacoustic wave equation is solved by the moment method. Absorbing boundary conditions are implemented by reducing Q and adjusting the complex velocity (to reduce Q-dependent reflectivity) in a zone around the edges of the model grid. Nonlinear inversion is performed using iterative linearized inversions. The residual wavefield at a single frequency is back projected, using an anticausal Green's function, along the viscoacoustic wavepath in an estimate of the model, to get updated velocity and Q distributions. The model obtained from data at one frequency becomes input to inversion at the next higher frequency. Velocity and Q are inverted simultaneously as they are interdependent. Both modeling and inversion algorithms are successfully tested with synthetic examples; data at two or three frequencies are sufficient to produce reliable images from noise-free synthetic data. [References: 26]
机译:可以在空频域中实现对地震波场的建模和反演,其中包括Q的衰减和相位分散效应。粘声波方程通过矩量法求解。吸收边界条件是通过减小Q并调整模型网格边缘周围区域中的复数速度(以减小Q依赖的反射率)来实现的。非线性反演使用迭代线性化反演进行。使用反因果格林函数,沿着模型的估计值,沿着粘声波路径反投影单个频率上的残留波场,以获得更新的速度和Q分布。从一个频率的数据获得的模型输入到下一个较高频率的反演。速度和Q相互依赖,因此同时反转。建模和反演算法均已通过综合实例成功测试;两个或三个频率的数据足以从无噪声的合成数据中生成可靠的图像。 [参考:26]

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