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首页> 外文期刊>Journal of Applied Geophysics >Seismic waveforms and velocity model heterogeneity: Towards a full-waveform microseismic location algorithm
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Seismic waveforms and velocity model heterogeneity: Towards a full-waveform microseismic location algorithm

机译:地震波形与速度模型异质性:全波形微地震定位算法

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Seismic forward modeling is an integral component of microseismic location algorithms, yet there is generally no one correct approach, but rather a range of acceptable approaches that can be used. Since seismic signals are band limited, the length scale of heterogeneities can significantly influence the seismic wavefronts and waveforms. This can be especially important for borehole microseismic monitoring, where subsurface heterogeneity can be strong and/or vary on length scales equivalent to or less than the dominant source wavelength. In this paper, we show that ray-based approaches are not ubiquitously suitable for all borehole microseismic applications. For unconventional reservoir settings, ray-based algorithms may not be suitably accurate for advanced microseismic imaging. Here we focus on exploring the feasibility of using one-way wave equations as forward propagators for full waveform event location techniques. As a feasibility study, we implement an acoustic wide-angle wave equation and use a velocity model interpolation approach to explore the computational efficiency and accuracy of the solution. We compare the results with an exact solution to evaluate travel-time and amplitude errors. The results show that accurate travel-times can be predicted to within 2 ms of the true solution for modest velocity model interpolation. However, for accurate amplitude prediction or for higher dominant source frequencies, a larger number of velocity model interpolations is required. (C) 2014 Elsevier B.V. All rights reserved.
机译:地震正演模型是微地震定位算法不可或缺的组成部分,但通常没有一种正确的方法,而是可以使用的一系列可接受的方法。由于地震信号受频带限制,因此异质性的长度尺度会显着影响地震波前和波形。这对于井下微震监测尤其重要,在井下微震监测中,地下非均质性可能很强和/或在长度尺度上变化,等于或小于主辐射源波长。在本文中,我们表明基于射线的方法并非普遍适用于所有钻孔微地震应用。对于非常规的油藏设置,基于射线的算法可能不适用于高级微地震成像。在这里,我们专注于探索使用单向波动方程作为全波形事件定位技术的正向传播器的可行性。作为可行性研究,我们实现了一个声学广角波方程,并使用速度模型插值方法来探索该解决方案的计算效率和准确性。我们将结果与精确的解决方案进行比较,以评估行程时间和幅度误差。结果表明,对于适度的速度模型插值,可以将准确的行进时间预测为真实解的2 ms以内。但是,对于准确的幅度预测或更高的主导源频率,需要大量的速度模型插值。 (C)2014 Elsevier B.V.保留所有权利。

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