Review of geological and seismotectonic investigations related to 1998 Mw5.6 and 2004 Mw5.2 earthquakes in Krn Mountains

Q3 Earth and Planetary Sciences
A. Gosar
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引用次数: 8

Abstract

A review of geological and seismotectonic investigations conducted in the two decades after the 12 April 1998 earthquake in Krn Mountains, according to its magnitude the strongest earthquake in Slovenia in the 20 th century, is given. Many of these studies have wider scientific meaning than expected from the size of the earthquake. This was the first case in Slovenia that a strong earthquake was undoubtedly related to a particular fault. Seismotectonic studies of seismogenic Ravne fault revealed that it is an actively propagating strike-slip fault growing by interaction of individual right stepping fault segments and breaching of local transtensional step-over zones. Airborne laser scanning (LiDAR) of Idrija and Ravne faults, which resulted in high resolution bare earth digital elevation model, was in 2005 for the first time used to study surface expression of an active fault in Europe. Among the primary characteristics of the 1998 earthquake were extensive environmental effects expressed mainly as massive rockfalls. They were systematically documented and evaluated for intensity assessment using European Macroseismic Scale (EMS-98) and Environmental Seismic Intensity (ESI) scale introduced in 2007, because application of the data on damage to buildings was limited in sparsely populated high mountains epicentral area. These studies were pioneering due to novelty of both intensity scales, indicating their strong points and weaknesses. Large variations in damage to buildings in the upper Soča valley at similar epicentral distances pointed to strong site effects due to very heterogeneous glacial and fluvial deposits in sedimentary basins and valleys. Therefore, different seismic microzonation maps were prepared to evaluate the influence of soft sediments on seismic ground motion. Conducted studies fostered development of several earthquake geology research methods in Slovenia as tectonic geomorphology, evaluation of environmental seismic effects and seismotectonics. They had positive impact also on the university education in the fields of geophysics, seismology and structural geology.
克恩山1998年Mw5.6和2004年Mw5.2地震的地质和地震构造调查综述
回顾了1998年4月12日克恩山地震后20年来进行的地质和地震构造调查,根据其震级,这是斯洛文尼亚20世纪以来最强的地震。这些研究中的许多具有比从地震规模来看预期的更广泛的科学意义。这是斯洛文尼亚第一个强烈地震无疑与特定断层有关的案例。对发震Ravne断层的地震构造研究表明,它是一条由单个右阶断层段的相互作用和局部张性阶跃带的突破而形成的主动传播走滑断层。2005年,首次将Idrija和Ravne断层的机载激光扫描(LiDAR)用于研究欧洲活动断层的表面表现,该扫描产生了高分辨率裸地球数字高程模型。1998年地震的主要特征是广泛的环境影响,主要表现为巨大的落石。使用2007年引入的欧洲宏观地震等级(EMS-98)和环境地震强度等级(ESI)对其进行了系统的记录和评估,以进行强度评估,因为在人口稀少的高山震中地区,建筑物损坏数据的应用受到限制。这些研究是开创性的,因为这两种强度尺度都很新颖,表明了它们的优点和缺点。在类似的震中距离上,Soča山谷上部建筑物受损情况的巨大变化表明,由于沉积盆地和山谷中非常不均匀的冰川和河流沉积物,产生了强烈的场地影响。因此,编制了不同的地震微区划图,以评估软沉积物对地震动的影响。开展的研究促进了斯洛文尼亚几种地震地质研究方法的发展,如构造地貌学、环境地震效应评估和地震构造。它们还对大学在地球物理、地震学和结构地质学领域的教育产生了积极影响。
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来源期刊
Geologija
Geologija Earth and Planetary Sciences-Geophysics
CiteScore
1.00
自引率
0.00%
发文量
10
审稿时长
10 weeks
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