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Correlation-based reflection waveform inversion by one-way wave equations

机译:单向波动方程的基于相关性的反射波形反演

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摘要

Reflection full waveform inversion can update subsurface velocity structure of the deeper part, but tends to get stuck in the local minima associated with the waveform misfit function. These local minima cause cycle skipping if the initial background velocity model is far from the true model. Since conventional reflection full waveform inversion using two-way wave equation in time domain is computationally expensive and consumes a large amount of memory, we implement a correlation-based reflection waveform inversion using one-way wave equations to retrieve the background velocity. In this method, one-way wave equations are used for the seismic wave forward modelling, migration/de-migration and the gradient computation of objective function in frequency domain. Compared with the method using two-way wave equation, the proposed method benefits from the lower computational cost of one-way wave equations without significant accuracy reduction in the cases without steep dips. It also largely reduces the memory requirement by an order of magnitude than implementation using two-way wave equation both for two- and three-dimensional situations. Through numerical analysis, we also find that one-way wave equations can better construct the low wavenumber reflection wavepath without producing high-amplitude short-wavelength components near the image points in the reflection full waveform inversion gradient. Synthetic test and real data application show that the proposed method efficiently updates the background velocity model.
机译:反射全波形反演可以更新较深部分的地下速度结构,但往往陷于与波形失配函数相关的局部最小值中。如果初始背景速度模型与真实模型相距甚远,则这些局部最小值会导致循环跳跃。由于在时域中使用双向波方程进行常规反射全波形反演在计算上很昂贵并且会消耗大量内存,因此我们使用单向波方程实现基于相关的反射波形反演以获取背景速度。在这种方法中,单向波方程用于地震波正演建模,偏移/偏移和频域目标函数的梯度计算。与使用双向波动方程的方法相比,所提出的方法受益于较低波动的单向波动方程的计算成本,并且在没有陡峭倾角的情况下不会显着降低精度。与在二维和三维情况下使用双向波动方程的实现相比,它还大大减少了内存需求一个数量级。通过数值分析,我们还发现,单向波动方程可以更好地构造低波数反射波路径,而不会在反射全波形反演梯度中的像点附近产生高振幅短波分量。综合测试和实际数据应用表明,该方法有效地更新了背景速度模型。

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