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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Crustal modelling of the Ivrea-Verbano zone in northern Italy re-examined: Coseismic cataclasis versus extensional shear zones and sideways rotation
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Crustal modelling of the Ivrea-Verbano zone in northern Italy re-examined: Coseismic cataclasis versus extensional shear zones and sideways rotation

机译:重新审查了意大利北部Ivrea-Verbano带的地壳模型:地震震性与扩展剪切带和侧向旋转

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New field and microstructural observations in the Ivrea-Verbano zone (IVZ), northern Italy, reveal extensive post-Hercynian cataclasis, indentation structures, microtectonic escape structures, microcataclastic injectites and occasional true pseudotachylytes. The deformation occurred in situ and was governed by pure shear. These observations are incompatible with prevailing crustal models of the IVZ. Most of these models assume the presence of lower-crustal, originally flat-lying extensional shear zones, sideways block rotation and exposure of the petrological Moho, although the original structural observations from the central IVZ suggested that the post-Hercynian deformation was cataclastic rather than shear-dominated. Other, already published information also contradicts the sideways rotation of a crustal block comprising the IVZ and the adjacent Serie dei Laghi (SdL) after the Early Permian, as assumed in the models. The IVZ and SdL have different detrital zircon populations and are separated by a steep shear zone and a franscurrent fault (not rotated listric faults as assumed in the models). Rotation is also prevented by a flat-lying zone of miarolitic cavities in the Early Permian Baveno granite and by contemporaneous, vertical basic dykes. The widespread in-situ cataclasis is interpreted as due to coseismic deformation by high-frequency seismic waves generated by earthquakes along the Insubric fault, and exerting oscillatory compression, dilation and torsion in a <= 10 km wide zone along the footwall of the Insubric line. The in-situ post-Hercynian cataclasis, absence of lower-crustal extensional shear zones and lack of sideways rotation of the IVZ and SdL call for a new and simpler crustal model of the region. (C) 2015 Elsevier B.V. All rights reserved.
机译:在意大利北部Ivrea-Verbano区(IVZ)进行的新的田野和微观结构观测显示,海西期后的大范围地陷,凹陷结构,微构造逃逸结构,微碎屑碎屑岩和偶发的真假速溶岩都被广泛发现。变形发生在原地,并受纯剪切控制。这些观察结果与IVZ的现行地壳模型不符。这些模型大多数都假设存在低地壳,原本为平坦的伸展剪切带,侧向阻碍了旋转和岩石Moho的暴露,尽管来自IVZ中心的原始结构观测表明海西期后的变形是裂变的,而不是剪切为主。如模型中所假设的,其他已经发布的信息也与包括IVZ和早二叠纪之后相邻的Serie dei Laghi(SdL)的地壳的横向旋转相矛盾。 IVZ和SdL具有不同的碎屑锆石种群,并且被陡峭的剪切带和逆流断层(模型中假定的不是旋转的Listlic断层)隔开。早二叠世巴韦诺花岗岩中的扁桃体空洞平坦区和同期的垂直基堤也可以防止旋转。广泛的原位分解被解释为是由于沿沿亚地下断裂的地震产生的高频地震波引起的同震变形,并沿沿亚地下线底壁的<= 10 km宽的区域施加了振荡压缩,膨胀和扭转。海西后原位成因,低地壳伸展剪切带的缺失以及IVZ和SdL侧向旋转的缺乏,要求该地区建立一个新的,更简单的地壳模型。 (C)2015 Elsevier B.V.保留所有权利。

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