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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Frequency-domain full waveform inversion with plane-wave data
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Frequency-domain full waveform inversion with plane-wave data

机译:利用平面波数据进行频域全波形反演

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摘要

We derived an efficient frequency-domain full waveform inversion (FWI) method using plane-wave encoded shot records. The forward modeling involved application of position dependent linear time shifts at all source locations. This was followed by propagation of wavefields into the medium from all shotpoints simultaneously. The gradient of the cost function needed in the FWI was calculated first by transforming the densely sampled seismicdata into the frequency-ray parameter domain and then backpropagating the residual wavefield using an adjoint-state approach. We used a Gauss-Newton framework for model updating.The approximate Hessian matrix was formed with a plane-wave encoding strategy, which required a summation over source and receiver ray parameters of the Green's functions. Plane-wave encoding considerably reduces the computational burden and crosstalk artifacts are effectively suppressed by stacking over different ray parameters. It also has the advantage of directional illumination of the selected targets. Numerical examples show the accuracy and efficiency of our method.
机译:我们使用平面波编码的镜头记录导出了一种有效的频域全波形反演(FWI)方法。前向建模涉及在所有源位置上应用依赖位置的线性时移。随后,波场同时从所有发射点传播到介质中。首先通过将密集采样的地震数据转换到频率射线参数域中,然后使用伴随状态方法反向传播残留波场,来计算FWI中所需的成本函数的梯度。我们使用Gauss-Newton框架进行模型更新,使用平面波编码策略形成近似的Hessian矩阵,这需要对Green函数的源和接收射线参数求和。平面波编码大大减少了计算负担,并且通过叠加不同的射线参数有效地抑制了串扰伪像。它还具有对选定目标进行定向照明的优势。数值算例表明了我们方法的准确性和有效性。

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