A Method for Modeling Acoustic Waves in Moving Subdomains

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2022-04-13 DOI:10.3390/acoustics4020024
Milan Brankovic, M. Everett
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Abstract

Forward modeling plays a key role in both the creation of predictive models and the study of the surrounding environment through inversion methods. Due to their competitive computational cost and modest algorithmic complexity, finite difference methods (FDM) are commonly used to model the acoustic wave equation. An algorithm has been developed to decrease the computational cost of acoustic-wave forward modeling that can be applied to most finite difference methods. An important feature of the algorithm is the calculation, at each time step, of the pressure in only a moving subdomain which contains the grid points across which waves are passing. The computation is skipped at grid points at which the waves are negligibly small or non-existent. The novelty in this work comes from flexibility of the subdomain and its ability to closely follow the developing wavefield. To demonstrate the efficacy of the algorithm, it is applied to a standard finite difference scheme and validated against 2-D modeling results. The algorithm herein can play an important role in the reduction in computation time of seismic data analysis as the volumes of seismic data increase due to developments in data acquisition technology.
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一种运动子域中声波的建模方法
正向建模在预测模型的创建和通过反演方法研究周围环境方面都发挥着关键作用。由于具有竞争力的计算成本和适度的算法复杂性,有限差分法(FDM)通常用于对声波方程进行建模。已经开发了一种算法来降低声波正演建模的计算成本,该算法可以应用于大多数有限差分方法。该算法的一个重要特征是,在每个时间步长,只计算移动子域中的压力,该子域包含波浪经过的网格点。在波浪小到可以忽略不计或不存在的网格点处跳过计算。这项工作的新颖性来自子域的灵活性及其密切跟踪发展中的波场的能力。为了证明该算法的有效性,将其应用于标准有限差分格式,并根据二维建模结果进行了验证。随着数据采集技术的发展,地震数据量的增加,本文的算法可以在减少地震数据分析的计算时间方面发挥重要作用。
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CiteScore
3.70
自引率
0.00%
发文量
0
审稿时长
11 weeks
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