首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Refraction/wide-angle reflection investigation of the Cadomian crust between northern Brittany and the Channel Islands
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Refraction/wide-angle reflection investigation of the Cadomian crust between northern Brittany and the Channel Islands

机译:布列塔尼北部与海峡群岛之间的加拿大地壳的折射/广角反射研究

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A seismic refraction experiment has been carried out off the coast of northern Brittany (NW France) to investigate the deep structure of the North Armorican block. The seismic source was an array of airguns and the shots were recorded simultaneously both by ocean bottom seismometers and land stations. We present 2D velocity models computed from two crossing seismic refraction profiles (labelled P1 and P2 and each about 135 km long) oriented NE-SW and NNW-SSE, i.e. parallel and perpendicular, respectively, to the regional basement structures. Wide-angle reflection profiles were also performed to extend the 2D structures to a 3D crustal interpretation. Observed and calculated P-wave traveltimes were matched by forward modelling prior to their inversion in order to produce two crustal velocity models. The model which best fit the data consists of: (1) high basement velocities at the top of the crust, except in an area with shallow seismic velocity which can be as low as 3.0 km/s at the surface and possibly related to the existence of shallow Paleozoic sedimentary basins; (2) the mean crustal velocity ranges from 5.5 to 6.8 km/s at a depth of 15 km depth; (3) lower crustal velocities range from 7.0 to 7.5 km/s at a depth of 35-38 km and then from 7.5 to 8.1 km/s at the crust-mantle boundary located between 35 and 38 km depth. Comparisons with the crustal section imaged by the coincident seismic vertical reflection profile SWAT 10 show a good correlation between velocity gradients and lower crustal reflectivity. When compared to surrounding basement areas, the North Armorican Cadomian crust displays a slightly thicker crust and also a thicker reflective lower crust which can be related to the relative preservation of this Upper Proterozoic block from later Paleozoic and Mesozoic tectonic episodes. The crustal structure of the North Armorican block thus appears to be an intercalated feature between the surrounding Paleozoic areas and older shield or platform domains. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 36]
机译:已在布列塔尼北部(法国西北部)沿海进行了地震折射实验,以研究北阿莫里坎块的深层结构。地震源是一排气枪,海底地震仪和陆地站同时记录了这些镜头。我们提出了二维速度模型,该模型是根据两个交叉的地震折射剖面(分别标记为P1和P2,各自长约135 km)NE-SW和NNW-SSE(即分别平行于和垂直于区域基底结构)计算得出的。还执行了广角反射轮廓以将2D结构扩展到3D地壳解释。为了得到两个地壳速度模型,在进行反演之前,通过正演模拟将观测到的和计算出的P波传播时间进行匹配。最适合该数据的模型包括:(1)地壳顶部的高地下速度,但在地震速度较浅的地区,地表速度可能低至3.0 km / s,并且可能与存在有关浅古生界沉积盆地; (2)在15 km深度处的平均地壳速度范围为5.5至6.8 km / s; (3)在35-38 km的深度下地壳速度范围为7.0至7.5 km / s,然后在35至38 km深度的地幔幔边界处为7.5至8.1 km / s。与同时地震垂直反射剖面SWAT 10成像的地壳剖面的比较表明,速度梯度和较低的地壳反射率之间具有良好的相关性。与周围的地下室区域相比,北阿莫里肯大洋地壳的地壳略厚,反光的下部地壳也较厚,这可能与该上元古代块体相对免受后期古生代和中生代构造事件的影响有关。因此,北阿莫里肯块的地壳结构似乎是周围的古生代区域和较旧的盾构或平台区域之间的插层特征。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:36]

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