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Microseismic Event Estimation Based on an Efficient Wavefield Inversion

机译:基于高效波场反转的微震事件估计

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Full-waveform inversion (FWI) has shown its potentials in active seismic scenario in extracting a high-resolution velocity model of the subsurface. In the microseismic scenario, the source function is unknown, and FWI can be applied to optimize the source image and the velocity model, simultaneously. However, FWI is a highly nonlinear optimization problem, and it causes a bigger challenge when the source location and origin time are unknown. To mitigate these issues, we propose a two-stage scheme to invert for the source function and the velocity using an efficient wavefield inversion (EWI). We use outer-loop iterations to repeat the process until we achieve convergence. We specifically formulate an optimization problem to linearly reconstruct the wavefield that tries to fit both the data, as well as the wave equation corresponding to the background model. In the first stage, the reconstructed wavefield is used to calculate a source function using the background wave equation modeling operator without any inversion or update process. In the second stage, we use the computed source function to represent the true source to update the velocity model in the same way we use EWI in the active seismic case. Applications on data generated from a modified Marmousi model with a single microseismic event and multiple simultaneous events demonstrate the ability of the proposed method. An application to field dataset also demonstrates that the proposed method is effective in locating the microseismic event and inverting for a reasonably good velocity model, sequentially.
机译:全波形反转(FWI)在提取地下提取高分辨率速度模型时,其在有源地震场景中的潜力。在微震情况下,源功能未知,可以应用FWI以同时优化源图像和速度模型。然而,FWI是一个高度非线性优化问题,当源位置和原始时间未知时导致更大的挑战。为了缓解这些问题,我们提出了一种双级方案来使用高效的波场反转(EWI)反转源功能和速度。我们使用外循环迭代重复该过程,直到我们实现收敛。我们具体地制定了优化问题,以线性地重建试图适合数据的波场,以及与背景模型对应的波方程。在第一阶段,重建的波场用于使用背景波形方程建模运营商计算源功能,而无需任何反转或更新过程。在第二阶段,我们使用计算的源功能表示真正的源以以相同的方式更新速度模型,我们在有源地震案件中使用EWI的方式。具有单微次活动和多个同时事件的修改的Marmous模型生成的数据的应用,证明了所提出的方法的能力。用于现场数据集的应用还证明了所提出的方法在定位微震事件和依次定位具有合理良好的速度模型的微震事件和反转的方法有效。

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