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闽西南多金属成矿带地质地球物理特征综合研究——以永定大排多金属矿区为例
引用本文:张兴东,孟小红,陈召曦,王俊,修春晓.闽西南多金属成矿带地质地球物理特征综合研究——以永定大排多金属矿区为例[J].地球物理学报,2018,61(4):1588-1595.
作者姓名:张兴东  孟小红  陈召曦  王俊  修春晓
作者单位:1. 中国地质大学(北京)地球物理与信息技术学院, 北京 100083;2. 地下探测信息技术与仪器教育部重点实验室(中国地质大学(北京)), 北京 100083
基金项目:国家自然科学基金项目(41530321),中央高校基本科研业务费专项,国土资源部公益性项目(201311020)联合资助.
摘    要:闽西南地区位于福建武夷山成矿带西南部,自远古宙以来经历了多期次的构造演化.该区地处东南沿海构造-岩浆-成矿带上,为环太平洋大陆边缘多金属成矿带与南岭多金属成矿带复合部位,是我国重要的多金属矿产地.永定大排多金属矿区作为近年来武夷山成矿带新发现的大型多金属矿,区内叠加作用和控矿作用相对复杂,现有的地质地球物理工作程度不足以满足对该区域成矿规律的深入认识,一些基础地质问题亟待解决.因此,本文在深入收集永定大排矿区地质地球物理资料基础上,综合分析区域成矿背景与成矿构造,在重点区域布设综合地球物理勘探工作,包括1:1万高精度磁测、可控源音频大地电磁剖面及反射地震剖面.基于上述工作:1)开展了研究区航磁数据三维磁化率反演与分布特征分析与大地电磁二维电阻率反演与分布特征分析,开展了地震资料真地表深度偏移成像,获得了更加准确的地震剖面成像结果.2)结合推覆体控矿特征,地震剖面和电阻率剖面、航磁反演结果相互验证和约束,勾画了地下构造形态.地表地质剖面延伸和标定了构造形态的地质内涵,获得了从地表到3000 m深度的构造解释结果.解释结果清晰地显示了与推覆相关的构造、控矿层位以及岩体信息,为三位一体的找矿思路提供了地球物理依据.

关 键 词:闽西南成矿带  大排多金属矿  航磁  可控源音频大地电磁  反射地震  
收稿时间:2017-10-23

Comprehensive study of the geological and geophysical characteristics of the metallogenic belt in Southwest Fujian——A case study in the Yongding-Dapai polymetallic ore deposit
ZHANG XingDong,MENG XiaoHong,CHEN ZhaoXi,WANG Jun,XIU ChunXiao.Comprehensive study of the geological and geophysical characteristics of the metallogenic belt in Southwest Fujian——A case study in the Yongding-Dapai polymetallic ore deposit[J].Chinese Journal of Geophysics,2018,61(4):1588-1595.
Authors:ZHANG XingDong  MENG XiaoHong  CHEN ZhaoXi  WANG Jun  XIU ChunXiao
Affiliation:1. School of Geophysics and Information Technology, China University of Geosciences, Beijing 100083, China;2. Key Laboratory of Geo-detection(China University of Geosciences, Beijing), Ministry of Education, Beijing 100083, China
Abstract:The Southwestern Fujian area locates in the southeastern coastal tectonic magma metallogenic belt which is the composite part between the Pacific continental margin polymetallic metallogenic belt and the Nanling polymetallic metallogenic belt. It is one of the important polymetallic ore orogens in our country. Along with the increase of difficulty in finding superficial mineral resources, the prospecting focus has shifted to the search for deep concealed deposits. Dapai is a large polymetallic ore area with complicated tectonic conditions found along the Wuyishan metallogenic belt in recent years. The existing geological and geophysical works in this area are not enough for the deep understanding of the metallogenic regularity of this region. And there exist some basic geological problems to be solved. In the work discussed in this paper, geological and geophysical data of this area are collected. The regional metallogenic setting has been analyzed based on these collected data. Moreover, some effective comprehensive geophysical works have also been conducted in this area, including the high-precision aeromagnetic, the controlled source audio frequency magnetotelluric (CSAMT) method and the reflection seismic method. Based on above mentioned works, 1) Three dimensional magnetic susceptibility inversion and two dimensional magnetotelluric resistivity inversion have been carried out in the study area. Moreover, the physical characteristics have been analyzed based on the inversion results. The true depth migration of seismic data has been carried out, and more accurate seismic profile imaging results have been obtained. 2) According to the ore control characteristics of the nappe structure, the seismic and resistivity profile and the aeromagnetic inversion results have been verified and constrained by each other. Meanwhile, the structure of the underground structure has been outlined. The surface geological section was extended and elucidated the geological connotations of the structural form. The result of structural interpretation depicted the structure in the depth from the surface to 3 kilometers. The interpretation results clearly show the structure, ore control strata, and rock mass information of the nappe, and provide geophysical basis for the thought of the trinity prospecting.
Keywords:Metallogenic belt in the Southwest Fujian  Dapai polymetallic ore  Aeromagnetic  CSAMT  Reflection seismic
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