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首页> 外文期刊>Canadian journal of earth sciences >Teleseismic studies of the lithosphere below the Abitibi-Grenville Lithoprobe transect
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Teleseismic studies of the lithosphere below the Abitibi-Grenville Lithoprobe transect

机译:Abitibi-Grenville岩石探针断面以下岩石圈的远震研究

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摘要

In the past decade, the Abitibi-Grenville Lithoprobe transect has been the site of numerous geological and geophysical surveys oriented towards understanding the lithospheric evolution of the southeastern Superior and adjoining Grenville provinces. Among the different geophysical methods that have been employed, earthquake seismology provides the widest range of information on the deep structures of the upper mantle. This paper presents a review of studies, both complete and ongoing, involving teleseismic datasets that were collected in 1994 and 1996 along the transect. A complete shear-wave splitting analysis has been performed on the 1994 dataset as part of a comparative study on electrical and seismic anisotropies. Results suggest a correlation between the two anisotropies (supported by xenolith data) and favour a lithospheric origin for the seismic anisotropy. The two anisotropies are believed to represent the fossilized remnants of Archean strain fields in the lithospheric roots of the Canadian Shield. Preliminary splitting results for the 1996 experiment suggest that the S-wave azimuthal anisotropy may be depth dependent and laterally varying. Ongoing receiver function analysis and traveltime inversion studies provide velocity models of the crust and upper mantle beneath the study area. Preliminary receiver function results reveal the presence of an S-velocity increase at similar to 90-100 km depth which appears to be laterally continuous over 200 km. Traveltime inversion models indicate the presence of an elongate, low-velocity anomaly beneath the southern portion of the 1996 array which strikes obliquely to major geological structures at the surface (e.g., Grenville Front). Preliminary interpretation relates this anomaly to the same process (e.g., fixed mantle plume, continental rifting) responsible for the emplacement of the Monteregian Hills igneous province. [References: 62]
机译:在过去的十年中,Abitibi-Grenville岩石探测样带成为了众多地质和地球物理勘测的场所,其目的是了解东南苏必利尔省和毗邻的Grenville省的岩石圈演化。在已采用的不同地球物理方法中,地震地震学提供了有关上地幔深层结构的最广泛信息。本文介绍了1994年和1996年沿横断面收集的涉及远程地震数据集的完整和正在进行的研究综述。作为对电学和地震各向异性的比较研究的一部分,对1994年的数据集进行了完整的剪切波分裂分析。结果表明两个各向异性之间存在相关性(由异种岩数据支持),并且有利于岩石圈起源为地震各向异性。据信这两个各向异性代表了加拿大盾构岩石圈根部太古宙应变场的化石残余。 1996年实验的初步分裂结果表明,S波方位各向异性可能与深度有关并且横向变化。正在进行的接收器功能分析和行程时间反演研究提供了研究区域下方地壳和上地幔的速度模型。初步的接收器功能结果表明,S速度在类似于90-100 km的深度处存在增加,在200 km的范围内似乎横向连续。行程时间反演模型表明,在1996年阵列的南部下方存在着一个细长的低速异常,该异常倾斜于地表的主要地质构造(例如Grenville Front)。初步解释将此异常与负责蒙特雷吉亚山火成岩省进驻的同一过程(例如固定地幔柱,大陆裂谷)相关。 [参考:62]

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