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Intra-continental Orogeny:Insights from Magnetotelluric Data into the Mesozoic Uplift History of the Eastern Jiangnan Orogen in South China 被引量:1
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作者 ZHANG Kun LÜ Qingtian +6 位作者 ZHAO Jinhua YAN Jiayong LUO Fan man zuhui XIAO Xiao ZHANG Gang YONG Fan 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2023年第1期55-67,共13页
Despite extensive efforts to understand the tectonic evolution of the Jiangnan Orogen in South China,the orogenic process and its mechanism remain a matter of dispute.Previous geodynamic studies have mostly focused on... Despite extensive efforts to understand the tectonic evolution of the Jiangnan Orogen in South China,the orogenic process and its mechanism remain a matter of dispute.Previous geodynamic studies have mostly focused on collisional orogeny,which is commonly invoked to explain the Jiangnan Orogen.However,it is difficult for such hypotheses to reconcile all the geological and geophysical data,especially the absence of ultrahigh-pressure metamorphic rocks.Based on the magnetotelluric data,we present a group of resistivity models produced through the combination of two-dimensional and three-dimensional inversions,revealing the geo-electrical structures of Jiangnan and a typical collisional orogen.In our models,the resistive crust is separated into three parts by a prominent conductive layer with opposite dipping directions on both sides.A special thrust-nappe system,which is different from that developed in a typical collisional process,is revealed in the Jiangnan Orogen.This structure suggests a process different from the simple collisional orogeny.To interpret our observations,an'intra-continental orogeny'is proposed to address the development of the Jiangnan Orogen in the Mesozoic.Furthermore,this'reworked'process may contain at least two stages caused by the decoupling of the lithosphere,which is revealed by an extra conductive layer beneath Jiangnan. 展开更多
关键词 magnetotelluric sounding 2D inversion 3D inversion intra-continental orogeny Jiangnan Orogen
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长江中下游成矿带岩浆-成矿系统深部背景和过程的电性结构约束 被引量:3
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作者 张昆 吕庆田 +4 位作者 满祖辉 兰学毅 郭东 陶龙 赵金花 《岩石学报》 SCIE EI CAS CSCD 北大核心 2022年第2期573-583,共11页
长江中下游成矿带是我国重要的铁铜金属“仓库”,然而,关于矿体密集分布成因的深部背景研究仍存较多争议,前人相继提出了碰撞变形、俯冲变形、构造机制转换等多种解释模型。本文基于成矿系统概念和前人对成矿系统各组成要素的研究成果,... 长江中下游成矿带是我国重要的铁铜金属“仓库”,然而,关于矿体密集分布成因的深部背景研究仍存较多争议,前人相继提出了碰撞变形、俯冲变形、构造机制转换等多种解释模型。本文基于成矿系统概念和前人对成矿系统各组成要素的研究成果,分析长江中下游成矿带内宁芜、庐枞、南陵-宣城和安庆-贵池矿集区的深部电性结构,并发现成矿带地壳深部普遍存在的相对统一的高导结构。探测结果显示:(1)长江中下游成矿带下地壳高导层指示着曾经发生的部分熔融以及壳幔物质混染的空间;(2)成矿带的浅部垂向高导异常是控矿通道的反映,并与深部高导层相连。电性结构具有一定程度的同源性,是研究区铁铜成矿系统的共性特征之一。基于电性结构和以往地球物理、地球化学研究成果,本文提出下地壳与上地幔混染的熔融物质不仅为区域广泛分布的中酸性岩浆岩提供了岩浆热液,同时“扮演”着铁铜成矿系统中的深部金属物源要素的角色,而与源区相连的通道在应力转换过程中控制着浅部成岩-成矿作用。基于通道宽度估算的应力体制转换过程的发育时间约为10Myr,期间控制着铜铁成矿系统的两个主要阶段。对于铜成矿系统,应力转换初期含铜热液迁移路径较长,混染了更多的地壳物质;而后期的铁成矿系统中含铁热液的上升通道较宽,二次壳幔混染较弱。 展开更多
关键词 岩浆-成矿系统 长江中下游成矿带 下地壳部分熔融 深部背景和过程 物质迁移
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