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藏北羌塘盆地基底高级变质岩LA-ICP-MS锆石U-Pb年龄及其地质意义 被引量:7
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作者 刘通 翟庆国 +3 位作者 王军 苏犁 康珍 索朗次列 《地质通报》 CAS CSCD 北大核心 2013年第11期1691-1703,共13页
俄久卖高级变质岩位于藏北羌塘盆地中央隆起带北缘的玛依岗日地区,是目前羌塘盆地基底高级变质岩石的唯一代表。该高级变质岩由正片麻岩和副片麻岩组成,本文以正片麻岩为研究重点。正片麻岩锆石CL图像显示出明显的核一幔一边结构。根... 俄久卖高级变质岩位于藏北羌塘盆地中央隆起带北缘的玛依岗日地区,是目前羌塘盆地基底高级变质岩石的唯一代表。该高级变质岩由正片麻岩和副片麻岩组成,本文以正片麻岩为研究重点。正片麻岩锆石CL图像显示出明显的核一幔一边结构。根据LA—ICP—MS锆石u—Pb测年结果,锆石核部年龄范围为242~2490Ma,记录了岩浆岩源岩的年代信息:锆石幔部具有典型的岩浆振荡环带结构,年龄为207Ma±2Ma,相应的Th/u值介于0.02-0.30之间,代表正片麻岩原岩的岩浆结晶时代.该年龄与羌塘中部地区晚三叠世高压变质作用和岛弧岩浆作用在时空上相对应。锆石增生边的年龄为161~197Ma.对应的Th/u值介于0.02-0.15之间,代表片麻岩发生主变质作用的时代,可能是班公湖一怒江洋盆向北的俯冲消减作用在羌塘中部地区的响应。地球化学资料显示,正片麻岩具有类似岛弧型火山岩的地球化学特征。综合区域地质资料,俄久卖高级变质岩原岩的形成与区域上广泛存在的晚三叠世构造、岩浆及角度不整合事件相对应,可能指示羌塘盆地统一基底的形成时代为晚三叠世。这对深入认识羌塘盆地基底的时代、性质及含油气盆地资源远景评价等具有重要意义。 展开更多
关键词 羌塘盆地基底 高级变质岩 LA—ICP-MS锆石U—Pb年龄 地球化学特征
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Regional metallogenic structure based on aeromagnetic data in northern Chile 被引量:3
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作者 Zhu Xiao-San Lu Min-Jie 《Applied Geophysics》 SCIE CSCD 2016年第4期721-735,740,共16页
Chile is a very important country that forms part of the Andean metallogenic belts. The Atacama and Domeyko fault systems in northern Chile control the tectonic- magmatic activities that migrate eastward and the types... Chile is a very important country that forms part of the Andean metallogenic belts. The Atacama and Domeyko fault systems in northern Chile control the tectonic- magmatic activities that migrate eastward and the types of mineral resources. In this paper, we processed and interpreted aeromagnetic data from northern Chile using reduction to pole, upward field continuation, the second derivative calculation in the vertical direction, inclination angle calculation, and analytical signal amplitude analysis. We revealed the locations and planar distribution characteristics of the regional deep faults along the NNE and NS directions. Furthermore, we observed that the major reasons for the formation of the tectonic-magmatic rocks belts were the nearly parallel deep faults distributed from west to east and multiple magmatic activities along these faults. We ascertained the locations of volcanic mechanisms and the relationships between them using these regional deep faults. We deduced the spatial distributions of the basic-intermediate, basic, and acidic igneous rocks, intrusive rocks, and sedimentary sequences. We showed the linear positive magnetic anomalies and magnetic anomaly gradient zones by slowly varying the background, negative magnetic anomaly field, which indicated the presence of strong magmatic activities in these regional deep faults; it also revealed the favorable areas of copper and polymetallic mineralization. This study provides some basic information for further research on the geology, structural characteristics, and mineral resource prospecting in northern Chile. 展开更多
关键词 Andean metallogenic belt aeromagnetic anomaly Atacama fault system Domevko fault system structural interpretation volcanic mechanism
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Exploring the Wenchuan earthquake fault through the accurate location of WFSD-4#Well using seismic reflection
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作者 Feng Yang-Yang Yu Chang-Qing +6 位作者 Li Hai-Bing Qu Chen Wu Chan Wang Qi Luo Su Huang Jin-Peng Rehana Ghazi 《Applied Geophysics》 SCIE CSCD 2022年第4期473-484,603,共13页
Deep drilling data on seismogenic faults that are obtained directly can help in understanding earthquake mechanisms and the resulting changes in deep structure and material composition.However,geophysical data are nec... Deep drilling data on seismogenic faults that are obtained directly can help in understanding earthquake mechanisms and the resulting changes in deep structure and material composition.However,geophysical data are necessary to ensure that the planned borehole accurately drills through the target faults.In this study,the deep crustal structure of the Longmenshan fault is explored to obtain seismogenic fault characteristics of the Wenchuan earthquake.A scientific drilling project,Wenchuan Earthquake Fault Scientific Drilling No.4 Borehole(WFSD-4)is proposed with a borehole designed to drill through the north section of the fault zone while penetrating as many geological bodies and target layers related to seismogenic fault slip as possible.High-precision seismic exploration is then carried out to study the deep structure of the fault zone and achieve the scientific objective of the borehole.Two high-precision deep seismic reflection lines were arranged perpendicularly to the fault zone,and data were obtained through special acquisition schemes and processing methods.Finally,the surface position and drilling depth route of WFSD-4 are determined based on the interpretation results of seismic profiles.The seismic reflection method for site selection of the Wenchuan earthquake fault scientific drilling is proven feasible by comparing the interpretation with the actual drilling results,laying the foundation for further study on the deep structures of fault zones. 展开更多
关键词 Wenchuan earthquake site selection of drilling seismic reflection special processing method
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