A phase unwrapping approach in measuring surface wave phase velocities from ambient noise

IF 2.8 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Yanan Xie, Yinhe Luo, Yingjie Yang
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引用次数: 0

Abstract

SUMMARY In the past two decades or so, ambient noise tomography (ANT) has emerged as a powerful tool for investigating high-resolution crustal and upper-mantle structures. A crucial step in the ANT involves extracting phase velocities from cross-correlation functions (CCFs). However, obtaining precise phase velocities can be a formidable challenge, particularly when significant lateral velocity variations exist in shallow subsurface imaging that relies on short-period surface waves from ambient noise. To address this challenge, we propose an unwrapping correction method that enables the accurate extraction of short-period dispersion curves. Our method relies on the examination of the continuity of phase velocities extracted from CCFs between a common station and other neighbouring stations along a linear array. We demonstrate the effectiveness of our approach by applying our method to both synthetic and field data. Both applications suggest our unwrapping correction method can identify and correct unwrapping errors in phase velocity measurements, ensuring the extraction of accurate and reliable dispersion curves at short periods from ambient noise, which is essential for subsequent inversion for subsurface structures.
从环境噪声中测量表面波相位速度的相位解包方法
摘要 在过去二十多年里,环境噪声层析成像(ANT)已成为研究高分辨率地壳和上地幔结构的有力工具。环境噪声层析成像的一个关键步骤是从交叉相关函数(CCF)中提取相位速度。然而,获取精确的相位速度是一项艰巨的挑战,尤其是在浅层地下成像中存在显著的横向速度变化时,这种成像依赖于环境噪声产生的短周期表面波。为了应对这一挑战,我们提出了一种能够精确提取短周期频散曲线的解包校正方法。我们的方法依赖于检查从 CCF 中提取的相位速度在沿线性阵列的共同站点和其他相邻站点之间的连续性。我们将我们的方法应用于合成数据和实地数据,以证明我们方法的有效性。这两项应用表明,我们的解缠校正方法可以识别并纠正相位速度测量中的解缠误差,确保从环境噪声中提取准确可靠的短周期频散曲线,这对随后的地下结构反演至关重要。
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来源期刊
Geophysical Journal International
Geophysical Journal International 地学-地球化学与地球物理
CiteScore
5.40
自引率
10.70%
发文量
436
审稿时长
3.3 months
期刊介绍: Geophysical Journal International publishes top quality research papers, express letters, invited review papers and book reviews on all aspects of theoretical, computational, applied and observational geophysics.
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