首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Crustal velocity structure of Cathaysia Block from an active-source seismic profile between Wanzai and Hui'an in SE China
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Crustal velocity structure of Cathaysia Block from an active-source seismic profile between Wanzai and Hui'an in SE China

机译:中国人寨和惠安之间的主动源地震剖面中的大肠杆菌块的地壳速度结构

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With the purpose of exploring the widely distributed Mesozoic granitoids in SE China and the related mineralization, we carried out a new 530-km-long seismic wide-angle reflection and refraction (WARR) profile along the transect Wanzai-Hui'an. Based on a previous exploration in 2012 and the analysis of this WARR profile, we have deduced a detailed P-wave velocity model of the crust and uppermost mantle. The main results are: (1) The crustal thickness is about 30 to 32 km beneath the Yangtze Block and West Cathaysia, and 29 to 30 km below the East Cathaysia, which represents a significant thinning with respect to the worldwide average thickness of shields and platforms. (2) The variation in seismic velocity between the upper crust and middle-lower crust in the Yangtze Block and the Cathaysia Blocks indicates that the Shaoxing-Jiangshan-Pingxiang Fault (SJPF) is the tectonic boundary between the Yangtze and Cathaysia and the Zhenghe-Dapu Fault (ZDF) is the tectonic boundary between the west and east Cathaysia. (3) The middle crust exhibits a low P-wave velocity layer of 6.2 km/s below the Wuyishan Metallogenic Belt (WMB). This low velocity layer can be attributed to the delamination during the Caledonian orogeny and the Yanshanian extension. (4) The middle-lower crust shows a clear lateral velocity variation from west to east in Cathaysia. The subduction of the Paleo-Pacific plate is believed to be the main reason for the extensional tectonic environment and magmatism during the Yanshanian (Jurassic-Cretaceous) period, leading to significant crustal and lithospheric thinning. Relatively high velocity in the middle-lower crust and widely disseminated Cretaceous volcanic rocks in East Cathaysia may be related to the slab rollback of the Paleo-Pacific plate in the late Yanshanian (Cretaceous) period.
机译:为了探索中国东南部广泛分布的中生代花岗岩类及其相关成矿作用,我们沿着万载-惠安样带进行了一个新的530 km长的地震广角反射和折射(WARR)剖面。基于2012年之前的勘探和对该WARR剖面的分析,我们推导了地壳和最上部地幔的详细P波速度模型。主要结果是:(1)地壳厚度在扬子地块和西华夏以下约30-32km,在东华夏以下约29-30km,相对于全球地盾和地台的平均厚度而言,这意味着显著变薄。(2) 扬子地块和华夏地块上、中、下地壳的地震速度变化表明,绍兴-江山-萍乡断裂(SJPF)是扬子和华夏之间的构造边界,郑和-大埔断裂(ZDF)是华夏东西之间的构造边界。(3) 在武夷山成矿带(WMB)下方,中地壳呈现出6.2km/s的低P波速度层。这一低速层可归因于加里东运动和燕山伸展期间的分层。(4) 华夏中下地壳表现出明显的由西向东的速度横向变化。古太平洋板块的俯冲被认为是燕山期(侏罗纪-白垩纪)伸展构造环境和岩浆作用的主要原因,导致地壳和岩石圈显著减薄。华夏东部中下地壳相对较高的速度和广泛分布的白垩纪火山岩可能与燕山晚期(白垩纪)古太平洋板块的板块后退有关。

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