EENSANE(东欧地震环境噪声)项目:为喀尔巴阡山-潘诺尼亚地区及其他地区的环境噪声交叉相关性和地壳地震模型提供一个新的免费数据库

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Laura Petrescu, Anica Otilia Plăcintă, Felix Borleanu, Andrei Mihai, Mircea Radulian, Mihaela Popa, Alina Coman, Carmen Cioflan
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引用次数: 0

摘要

过去几十年来,环境地震噪声已被证明是一种特别有效的地下成像工具,应用范围从近地表成像到地壳或上地幔层析成像。从根本上说,它依赖于地震台站对地动数据连续记录的交叉关联。在提取有意义的信号方面,处理步骤已变得越来越精细和有前景,这些信号可进一步用于一系列经典的地震学工具。然而,处理过程通常十分繁琐,耗费时间和内存,因为需要在宽带地震台站连续记录数年的噪声,以获得高信噪比的经验格林函数。为了简化研究工作,我们建立了一个 1999 年至 2020 年期间在中欧和东欧运行的成对宽带地震台之间的环境地震噪声交叉相关性数据库。该数据库是罗马尼亚国家地球物理研究所主持的东欧环境地震噪声(EENSANE)研究项目的一部分,随着更多台站(如新的 AdriaArray 网络提供的台站)的出现,该数据库将逐步扩大。在该数据库的基础上,利用最先进的反演技术,我们开发了一系列东欧克拉通、跨欧洲断裂带和中欧较年轻的增生地层的近地表和地壳层析成像模型。我们的综合模型提供了各向同性和方位各向异性的地震速度,这些速度来自地表波的频散和瑞利波衰减包络的衰减参数。利用环境噪声的水平垂直比,我们还恢复了喀尔巴阡山系各台站下方的共振基频和近地表剪切波速度模型。基于交叉相关函数,我们还能够在地震发生几十年后检索到过去地震的地震波场和地面位移峰值振幅,为改进欧洲地震脆弱地区和发展中地区的地震灾害和风险模型提供了机会。我们的多学科成果证明了环境噪声用途的多样性,以及 EENSANE 数据库在广泛的地震成像和灾害应用中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The EENSANE (Eastern European Seismic Ambient Noise) project: providing a new free database of ambient noise cross-correlations and crustal seismic models in the Carpathian-Pannonian Region and beyond

The EENSANE (Eastern European Seismic Ambient Noise) project: providing a new free database of ambient noise cross-correlations and crustal seismic models in the Carpathian-Pannonian Region and beyond

Ambient seismic noise has proven to be a particularly effective tool for subsurface imaging in the last decades, with applications ranging from near surface imaging, to crustal or upper mantle tomography. Fundamentally, it relies on the cross correlations of continuous recordings of ground motion data at pairs of seismic stations. Processing steps have become more refined and promising in extracting meaningful signals that can further be used in a range of classic seismology tools. The processing, however, is usually cumbersome, time- and memory-consuming, as it requires years of continuous noise recorded at broadband seismic stations, to obtain high signal-to-noise ratio empirical Green’s functions. In order to ease the research effort, we built a database of ambient seismic noise cross correlations between pairs of broadband seismic stations that operated in Central and Eastern Europe between 1999 and 2020. The database is part of the Eastern European Ambient Seismic Noise (EENSANE) research project hosted by the National Institute of Earth Physics in Romania and will progressively grow as more stations become available, such as those provided by the new AdriaArray network. Based on this database and using state-of-the-art inversion techniques, we developed a series of near-surface and crustal tomography models of the Eastern European craton, the Trans-European Suture Zone and younger accreted terranes from Central Europe. Our integrated models provide both isotropic and azimuthally anisotropic seismic velocities from surface wave dispersion and attenuation parameters from the decay envelopes of Rayleigh waves. Using horizontal-to-vertical ratios of ambient noise, we also recovered the fundamental frequency of resonance and near surface shear wave velocity models beneath stations located across the Carpathian Orogen. Based on cross-correlation functions, we were also able to retrieve the seismic wavefield and peak ground displacement amplitudes from past earthquakes decades after their occurrence, offering a chance for improving seismic hazard and risk models in seismically vulnerable and developing regions of Europe. Our multidisciplinary results prove the versatility of ambient noise uses and the importance of the EENSANE database for a wide range of seismological imaging and hazard applications.

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来源期刊
Acta Geodaetica et Geophysica
Acta Geodaetica et Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.10
自引率
7.10%
发文量
26
期刊介绍: The journal publishes original research papers in the field of geodesy and geophysics under headings: aeronomy and space physics, electromagnetic studies, geodesy and gravimetry, geodynamics, geomathematics, rock physics, seismology, solid earth physics, history. Papers dealing with problems of the Carpathian region and its surroundings are preferred. Similarly, papers on topics traditionally covered by Hungarian geodesists and geophysicists (e.g. robust estimations, geoid, EM properties of the Earth’s crust, geomagnetic pulsations and seismological risk) are especially welcome.
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