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首页> 外文期刊>Geomorphology >Geomorphological and paleoseismological evidence of capable faulting in the Northern Apennines (Italy): Insights into active tectonics and seismic hazard of the Lunigiana basin
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Geomorphological and paleoseismological evidence of capable faulting in the Northern Apennines (Italy): Insights into active tectonics and seismic hazard of the Lunigiana basin

机译:北亚平宁山脉(意大利)能力出错的地貌和古摆力证据:伦尼亚纳盆地积极构造与地震危害的见解

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The Lunigiana basin is a NW trending tectonic depression located in the Northern Apennines of Italy. The basin is bounded by active normal faults, characterized by moderate to strong seismicity, with historical earthquakes reaching up to magnitude 6 (February 14,1834) and instrumental events with magnitude up to 5.4 (June 21, 2013). Using the classical methodologies of active tectonic studies (i.e. remote sensing and digital topography analysis, field mapping, structural geology, and tectonic geomorphology), the main active faults have been mapped for their geometries, kinematics and evidence of activity. Both fault systems bounding the basin to the northeast and southwest have revealed clear evidence of fault capability, i.e., tectonic displacement of the latest Pleistocene-Holocene sediments and geomorphic markers. Then, the study focused on the southwestern Arzelato-Mulazzo-Tresana fault system (AMT), depicting its Late Quaternary tectono-sedimentary evolution and linkage relationship between important fault segments. The throw measurement of key geomorphic markers on the central fault of the AMT allowed to derive medium(last 350-250 ka) and short-term (18-13 ka) vertical slip rates: 0.44-0.62 and 0.45-0.68 mm/yr, respectively.Lastly, an exploratory trench for paleoseismological analysis was dug across the fault scarp where geomorphic indicators of active surface faulting were most pronounced, just south of the village of Mulazzo. Its paleoseismological analysis revealed at least two events of surface faulting, with a cumulative throw in excess of 70 cm, occurred in historical times. Radiocarbon dating of the exposed alluvial and slope deposits allowed to bracket the surface rupture events to 14th to 19th century CE and after the 18th century CE. Typically, in the active extensional belt of the Apennines, the observed offsets correspond to earthquakes of magnitude 6.3, also confirmed by the empirical fault-scaling laws. This magnitude is, therefore, higher than that currently inferred for this seismic source (Mw 5.7 divided by 6.0 in the DISS catalog) and is comparable to that experienced in the adjoining Garfagnana basin (Mw 6.5 on September 7, 1920). The findings of this research suggests a need to revise the seismic hazard of the Lunigiana basin, including greater consideration of the surface faulting hazard in the seismic microzonation studies.More generally, our findings provide new insight into the comprehension of a) the still unclear deep geometry (listric or not?) and the hierarchy of bounding faults, and b) provide new elements to decipher the puzzling seismotectonic relationships of Lunigiana with the adjoining basins on both its ends, characterized by quite different structural settings. (C) 2020 Elsevier B.V. All rights reserved.
机译:Lunigiana Basin是一个位于意大利北亚平宁人的NW趋势构造萧条。该盆地受到主动正常断层的限制,其特征在于中度至强烈的地震性,历史地震达到6(2月14日,2月1834)和仪器事件,高达5.4(2013年6月21日)。使用主动构造研究的经典方法(即遥感和数字地形分析,现场映射,结构地质和构造地貌),主要的主动故障已被映射到它们的几何形状,运动学和活动证据。将盆地与东北和西南部限定的故障系统都揭示了故障能力的清晰证据,即最新的全新世 - 全新世沉积物和地貌标志物的构造位移。然后,该研究的重点是西南arzelato-mulazzo-tresana故障系统(AMT),描绘了重要的故障段之间的第四纪构造 - 沉积演化和联系关系。在允许培养的AMT中央故障上抛出关键几何标记的测量(最后350-250 kA)和短期(18-13 kA)垂直滑移率:0.44-0.62和0.45-0.68 mm / yr,分别是,探讨古源性分析的探索性沟槽挖出了断层围巾,在穆拉佐村的南部最明显的,现有的表面断层的地貌指标。其古摆动学分析显示了至少两个表面断层事件,累积抛出超过70厘米,在历史时期发生。暴露的冲积和斜坡沉积物的Radiocarbon约会允许将表面破裂事件括起来至14至19世纪的CE,18世纪CE之后。通常,在亚平线的主动延伸带中,观察到的偏移对应于幅度> 6.3的地震,也通过经验的故障缩放法律证实。因此,该幅度高于该地震源(MW 5.7除以PIMS目录中的6.0),并且与毗邻的Garfagnana盆地(1920年9月7日MW 6.5中的经历相当。本研究的结果表明需要修改Lunigiana盆地的地震危害,包括对地震微微型研究中的表面断层危害的抗震危害。我们的调查结果仍然对A)的理解提供了新的洞察力几何(列出或不呢?)和边界故障的层次和B)提供了新的元素,以破译其在其两端的邻接盆地的呼吸地震局部关系,其特征是相当不同的结构设置。 (c)2020 Elsevier B.v.保留所有权利。

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