历史地震图的现代方法:1947 年意大利南部 Squillace 盆地地震的力矩张量反演

S. Scolaro, Josep Batlló, B. Orecchio, D. Presti, Daniel Stich, C. Totaro
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摘要

科学界越来越意识到保存和恢复历史地震数据的重要性,这也是因为这些数据有可能与现代分析技术结合使用。模拟记录时代的地震图涵盖了 100 多年的地震活动,对于评估地震风险,尤其是过去几个世纪发生过破坏性事件但最近几十年活动较少的地区的地震风险,可能具有重要意义。在这项研究中,我们利用模拟地震图研究了 1947 年发生在意大利南部卡拉布里亚中部的一次推定震级为 5.7 级的地震,该地区是地震风险较高的地区,其复杂的地球动力环境由西北向的努比亚-欧亚大陆辐合和东南向的爱奥尼亚板块回滚所主导。根据地震目录,1947 年的地震是该地区仪器记录到的唯一一次 M > 5.5 的地震,在该地区,爱奥尼亚板块的侧缘被认为是存在的,关于俯冲-转换边缘传播(STEP)断层带的可能存在和正确位置的激烈辩论仍未结束。为了研究此次地震,我们选择了 15 幅具有相关仪器参数的中长周期模拟地震图,并进行了矢量化处理和适当的波形修正。通过对模拟地震图进行波形反演,专门开发了一种时域力矩张量计算技术,并将其应用于数字化记录。为 1947 年地震估算的力矩张量解表明,地震为走向滑动机制,震源深度为 28 千米,震级为 5.1。在西-西北-东-东南向断层上获得的下中心深度和左侧运动学数据与当地地震构造框架非常吻合,并且与卡拉布里亚中部的 STEP 断层活动相吻合,为有关板块边缘运动学的争论提供了新的地震学约束。此外,所做的分析还有助于与科学界分享与历史地震图管理相关的新数据和方法问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modern Approaches for Historical Seismograms: Moment Tensor Inversion of the 1947 Squillace Basin, South Italy, Earthquake
The scientific community has become increasingly aware of the importance of preserving and recovering historical seismic data, also because of their possible use in combination with modern techniques of analysis. Seismograms coming from the analog recording era cover more than 100 yr of seismic activity and may have a great relevance, especially for seismic risk evaluations in regions struck by destructive events in the past centuries but characterized by minor activity in the last decades. In this study we used analog seismograms to investigate an earthquake of presumed magnitude 5.7 that occurred in 1947 in central Calabria, south Italy, a high-seismic risk region framed in a complex geodynamic setting led by northwest-trending Nubia–Eurasia convergence and southeastward Ionian slab rollback. According to seismic catalogs, the 1947 is the only M > 5.5 earthquake instrumentally recorded in an area where the presence of the lateral edge of the Ionian slab has been suggested and an intense debate is still open concerning possible existence, and proper location, of a subduction-transform edge propagator (STEP) fault zone. To study this earthquake, we selected 15 medium- to long-period analog seismograms with related instrumental parameters, and we proceeded with vectorization process and proper waveform corrections. A technique specifically developed for time-domain moment tensor computation through waveform inversion of analog seismograms has been applied to the digitized recordings. The moment tensor solution estimated for the 1947 earthquake indicates strike-slip mechanism, focal depth of 28 km and Mw 5.1. The obtained hypocentral depth and left-lateral kinematics on about west-northwest–east-southeast-oriented fault fit well with the local seismotectonic framework and are compatible with STEP fault activity in central Calabria, furnishing a new seismological constraint to the debate concerning slab edge kinematics. Moreover, the presented analysis is useful for sharing with the scientific community new data and methodological issues related to historical seismogram management.
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