首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >3D seismic analysis of the Coast Shear Zone in SE Alaska and Western British Columbia: Broadside analysis of ACCRETE wide-angle data
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3D seismic analysis of the Coast Shear Zone in SE Alaska and Western British Columbia: Broadside analysis of ACCRETE wide-angle data

机译:阿拉斯加东南部和西不列颠哥伦比亚省海岸剪切带的3D地震分析:ACCRETE广角数据的宽边分析

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The multidisciplinary ACCRETE project addresses the question of continental assemblage in southeast Alaska and western British Columbia by terrane accretion and magmatic addition. The previous studies of this project yielded important information for understanding the structures across the Coast Shear Zone (CSZ) and the formation of the CSZ and the Coast Mountains Batholith (CMB). The present study extends these interpretations into pseudo-3-D by using two additional wide-angle ACCRETE seismic lines. By analyzing the broadside wide-angle data using a series of laterally homogeneous 2-D models, we derive a lower-resolution 3-D velocity model of the outboard terranes and constrain variations in crustal thickness across and along the CSZ. Models of the broadside data confirms major structural and compositional trends extend along strike to the northwest. The key features are: a) a steep Moho ramp only similar to 15-km wide is coincident with the CSZ and divides thin (similar to 25 +/- 1 km) crust to the west below the west-vergent thrust belt (WTB) from thicker (similar to 31 +/- 1 km) crust to the east below the CMB, (b) low-velocity mantle (7.7-7.9 km/s) extends beneath the entire study region indicating high crustal and upper-mantle temperatures below the WTB and CMB, and (c) the Alexander terrane is characterized by strong mid-crustal reflectivity and high lower crustal velocities that are consistent with gabbroic composition. This study extends the earlier interpretation and implies that the ramp is indeed likely associated with transpressional tectonics and magmatic crustal addition east of the CSZ.
机译:多学科的ACCRETE项目通过增加地层和增加岩浆来解决阿拉斯加东南部和不列颠哥伦比亚省西部的大陆组合问题。该项目的先前研究为了解整个海岸剪切带(CSZ)的结构以及CSZ和海岸山脉岩床(CMB)的形成提供了重要信息。本研究通过使用两条额外的广角ACCRETE地震线将这些解释扩展为伪3-D。通过使用一系列横向均一的2-D模型分析宽边的广角数据,我们导出了舷外地层的低分辨率3-D速度模型,并限制了沿CSZ和沿CSZ的地壳厚度变化。宽边数据模型证实了主要的构造和组成趋势沿走向西北延伸。主要特征是:a)陡峭的Moho坡道仅与15公里宽相吻合,与CSZ重合,并将薄薄的(约25 +/- 1公里)地壳向西划分为西向冲断带(WTB)从CMB下方的东部到较厚的地壳(约31 +/- 1 km),(b)低速地幔(7.7-7.9 km / s)在整个研究区域下方延伸,表明地壳和上地幔温度较高WTB和CMB,以及(c)亚历山大地层的特征是强烈的中地壳反射率和较高的下地壳速度,与辉长岩成分一致。这项研究扩展了较早的解释,并暗示该斜坡确实可能与CSZ以东的超压构造和岩浆地壳增加有关。

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