基于震源机制反演的罗马尼亚弗朗西亚地震带现今应力场格局

IF 1.2 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Andrei Bala, Mircea Radulian, Dragos Toma-Danila
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引用次数: 5

摘要

喀尔巴阡山脉东南部的弗朗切震区以局部中深度地震活动为特征。由于其复杂的地球动力学和大的应变释放,弗朗西亚是喀尔巴阡-潘诺尼系的关键元素。对最近编制的断平面解目录(REFMC)中的数据进行了反演,以评估弗朗西亚的深度应力状态。在所有考虑的群中,包括位于弗朗西亚板块上方的地壳层,都得到了一个单一的占优势的下倾广泛状态。普遍的应力状态证实了以前的研究,并且需要一些地幔-地壳耦合。S3主应力接近垂直方向,S1和S2主应力为水平方向,分别垂直和切向喀尔巴阡弧形弯道。这种配置存在于任何深度级别。根据地震活动模式,在Vrancea中深度域中有两个主要的活动段,在55 - 105 km和105 - 180 km处,都能够产生重大事件。两段构造应力的构造构型是相似的。此外,高故障不稳定性(I > 0.95)是区段的特征。摩擦比和应力比参数在底部从μ = 0.95下降到μ = 0.55, R = 0.51下降到R = 0.29。这种变化归因于在100公里以下激活的可能的弱化过程,并且可以解释地震活动性产生的增强,因为地震率和平均能量释放在下段相对于上段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Present-day stress field pattern in the Vrancea seismic zone (Romania) deduced from earthquake focal mechanism inversion
   Vrancea seismogenic zone in the South-Eastern Carpathians is characterized by localized intermediate-depth seismicity. Due to its complex geodynamics and large strain release, Vrancea represents a key element in the Carpatho-Pannonian system. Data from a recently compiled catalogue of fault plane solutions (REFMC) are inverted to evaluate stress regime in Vrancea on depth. A single predominant downdip extensive regime is obtained in all considered clusters, including the crustal layers located above the Vrancea slab. The prevalent stress regime confirms previous investigations and requires some mantle-crust coupling. The S3 principal stress is close to vertical, while S1 and S2 are horizontal, oriented perpendicularly and respectively tangentially to the Carpathians Arc bend. This configuration is present at any depth level. According to seismicity patterns, there are two main active segments in the Vrancea intermediate-depth domain, at 55 – 105 km and 105 – 180 km, both able to generate major events. The configuration of the tectonic stresses as resulted from inversion is similar in both segments. Also, high fault instability (I > 0.95) is characterizing the segments. The only notable difference is given by the friction and stress ratio parameters which drop down in the bottom segment from μ = 0.95 to μ = 0.55 and from R = 0.51 to R = 0.29. This variation is attributed to possible weakening processes activated below 100 km depth and can explain the intensification of seismicity production as earthquake rate and average energy release in the lower segment versus the upper segment. 
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来源期刊
Annals of Geophysics
Annals of Geophysics 地学-地球化学与地球物理
CiteScore
2.40
自引率
0.00%
发文量
38
审稿时长
4-8 weeks
期刊介绍: Annals of Geophysics is an international, peer-reviewed, open-access, online journal. Annals of Geophysics welcomes contributions on primary research on Seismology, Geodesy, Volcanology, Physics and Chemistry of the Earth, Oceanography and Climatology, Geomagnetism and Paleomagnetism, Geodynamics and Tectonophysics, Physics and Chemistry of the Atmosphere. It provides: -Open-access, freely accessible online (authors retain copyright) -Fast publication times -Peer review by expert, practicing researchers -Free of charge publication -Post-publication tools to indicate quality and impact -Worldwide media coverage. Annals of Geophysics is published by Istituto Nazionale di Geofisica e Vulcanologia (INGV), nonprofit public research institution.
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