P/SV Amplitude Ratios of Shallow Isotropic Explosions and Earthquakes Could Be Indistinguishable at Local Distances: Insights from Single-Station Waveform Simulations

Miao Zhang
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引用次数: 1

Abstract

Shear waves play a key role in seismic discrimination between explosions and earthquakes due to their different source mechanisms. However, shear waves are often observed in field explosions with unexpectedly large amplitude, and their generation mechanism is still a significant unresolved question in seismology. Many explanations have been proposed, including the asymmetry of explosive sources, and heterogeneity and/or anisotropy of the Earth’s subsurface. However, it has not been well understood whether source or velocity structure can independently and sufficiently explain the shear waves generated by explosions. Theoretically, tangential SH waves can be converted and scattered from vertical and radial SV waves due to anisotropy and heterogeneity. Thus, it is essential to understand the generation of SV waves by explosions. In this study, we utilize the frequency–wavenumber algorithm and 1D layered velocity models to simulate waveforms of isotropic explosions and double-couple earthquakes at local distances (<20 km). Our results suggest that explosions and earthquakes may generate comparable SV waves if both occurred within a near-surface velocity gradient zone. The earliest SV waves by explosions appear to originate from the near-source region. It implies that P/SV amplitude ratios of explosions and earthquakes could be indistinguishable under certain circumstances.
浅层各向同性爆炸和地震的P/SV振幅比在局部距离上无法区分:来自单站波形模拟的见解
由于震源机制的不同,横波在判别爆炸与地震中起着关键作用。然而,在现场爆炸中经常观测到意想不到的大振幅横波,其产生机制仍然是地震学中一个重要的未解决的问题。已经提出了许多解释,包括爆炸源的不对称性,以及地球地下的非均质性和/或各向异性。然而,震源结构和速度结构是否能够独立地充分地解释爆炸产生的横波,还没有得到很好的理解。从理论上讲,由于各向异性和非均质性,切向SH波可以从垂直和径向SV波转换和散射。因此,有必要了解爆炸产生的SV波。在本研究中,我们利用频率-波数算法和一维分层速度模型模拟了局地距离(<20 km)的各向同性爆炸和双偶地震的波形。我们的研究结果表明,如果爆炸和地震都发生在近地表速度梯度带内,则可能产生相当的SV波。由爆炸产生的最早的SV波似乎起源于近源区域。这意味着在某些情况下,爆炸和地震的P/SV振幅比是无法区分的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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