寻找未记录的地震效应:意大利大地震数据的概率分析

IF 4.2 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Andrea Antonucci, A. Rovida, V. D'Amico, D. Albarello
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引用次数: 1

摘要

摘要提出了一种在局部尺度上检测大地震烈度数据局部不完全性的方法。特别是,通过考虑强度预测方程(以概率形式)来确定现场实际发生未记录影响的概率,该方程由与周围现场记录的已知事件相关的观测结果综合而成。该分析的结果可用于调查局部地震历史的代表性和已知程度(即随时间变化的记录影响列表)。建议的方法适用于意大利地区。分析表明,在大多数考虑的地点,强度≥ 6最有可能至少发生过一次,但它们不包含在当前版本的意大利宏观地震数据库中。相反,在少数情况下,数据不足可能涉及更高的强度水平(即≥ 8) 。潜在丢失信息的地理分布反映了意大利境内地震活动的持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Looking for undocumented earthquake effects: a probabilistic analysis of Italian macroseismic data
Abstract. A methodology to detect local incompleteness of macroseismic intensity data at the local scale is presented. In particular, the probability that undocumented effects actually occurred at a site is determined by considering intensity prediction equations (in their probabilistic form) integrated by observations relative to known events documented at surrounding sites. The outcomes of this analysis can be used to investigate how representative and known the seismic histories of localities are (i.e., the list of documented effects through time). The proposed approach is applied to the Italian area. The analysis shows that, at most of the considered sites, the effects of intensity ≥ 6 should most probably have occurred at least once, but they are not contained in the current version of the Italian macroseismic databases. In a few cases, instead, the lack of data may concern higher intensity levels (i.e., ≥ 8). The geographical distribution of potentially lost information reflects the heterogeneity of the seismic activity over the Italian territory.
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来源期刊
Natural Hazards and Earth System Sciences
Natural Hazards and Earth System Sciences 地学-地球科学综合
CiteScore
7.60
自引率
6.50%
发文量
192
审稿时长
3.8 months
期刊介绍: Natural Hazards and Earth System Sciences (NHESS) is an interdisciplinary and international journal dedicated to the public discussion and open-access publication of high-quality studies and original research on natural hazards and their consequences. Embracing a holistic Earth system science approach, NHESS serves a wide and diverse community of research scientists, practitioners, and decision makers concerned with detection of natural hazards, monitoring and modelling, vulnerability and risk assessment, and the design and implementation of mitigation and adaptation strategies, including economical, societal, and educational aspects.
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