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Maxwell板状体反演在航空瞬变电磁法找矿实践中应用及效果
引用本文:朱琳,赵丛,江民忠,骆燕,彭莉红,孙栋华,宁媛丽,欧阳游.Maxwell板状体反演在航空瞬变电磁法找矿实践中应用及效果[J].矿产勘查,2018,9(3):420-427.
作者姓名:朱琳  赵丛  江民忠  骆燕  彭莉红  孙栋华  宁媛丽  欧阳游
作者单位:核工业航测遥感中心;中核集团铀资源地球物理勘查技术中心(重点实验室);东华理工大学地球物理与测控技术学院
基金项目:黑龙江省大兴安岭成矿带航电方法试验项目(编号:KCZX-YCCZ-2015032)及青海省石头坑德-五龙沟地区1∶1万航空电磁法测量项目(编号:2014.4.25)资助。
摘    要:航空瞬变电磁法在寻找隐伏和埋深较大的多金属矿产方面具有明显优势。VTEM航空瞬变电磁观测系统2013年引进到国内,先后在多个省区开展了多金属矿产勘查工作,均取得了明显的地质找矿效果。在航空瞬变电磁法找矿实践中,也逐步形成了一套完整的数据处理和资料解释理论及方法。Maxwell板状体反演是航空瞬变电磁数据解释的一种重要技术方法,把复杂地质结构简化为板状体模型来进行研究,获得地下地质地球物理体(或矿体)在三维空间上的分布特征,有效地确定钻探钻孔的位置和参数,直接用于找矿工程实践。文章重点介绍航空瞬变电磁Maxwell板状体反演的目标异常的选择、模型参数定义、典型板状体的正演响应、反演数据准备和正演拟合及反演,并以黑龙江和青海2个已知矿区为例说明Maxwell板状体反演在航空瞬变电磁找矿实践中的应用及效果。

关 键 词:航空瞬变电磁法  VTEM数据处理和解释  Maxwell板状体反演  多金属矿产勘查
收稿时间:2017/10/17 0:00:00

Applications of Maxwell plate modeling in airborne TEM surveyfor exploration
ZHU Lin,ZHAO Cong,JIANG Min-zhong,LUO Yan,PENG Li-hong,SUN Dong-hu,NING Yuan-li and OUYANG You.Applications of Maxwell plate modeling in airborne TEM surveyfor exploration[J].Mineral Exploration,2018,9(3):420-427.
Authors:ZHU Lin  ZHAO Cong  JIANG Min-zhong  LUO Yan  PENG Li-hong  SUN Dong-hu  NING Yuan-li and OUYANG You
Affiliation:Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002;School of Geophysics and Measurement-control Technology,East China University of Technology,Nanchang 330013,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002,Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002 and Airborne Survey and Remote Sensing Center of Nuclear Industry,Shijiazhuang 050002;Key Laboratory of Uranium Resources Geophysical Exploration Technology,China Nuclear Industry Group Company,Shijiazhuang 050002
Abstract:Airbone TEM has an obvious advantage in exploration of blinded and deep-buried polymetallic minerals. The most advanced VTEM system, introduced into China in 2013,was used for polymetallic minerals exploration in some provinces and autonomous regions. A complete set of data processing and interpretation theory and methods has been gradually taken shape. Maxwell plate modeling is an important technique for data interpretation of airborne TEM which simplifies the complicate geological structure to a plate model to underground geology and geophysical target (or bore) distribution in 3D space. It can effectively help to determine the location and parameters of drilling boreholes and directly used for prospecting practice. The paper focused on selection of target anomaly for Maxwell plate modeling, definition of model parameters, forward response of typical plate models, data preparation, forwarding and inversion, in addition, introduced the applications effect of Maxwell plate modeling in Heilongjiang and Qinghai.
Keywords:airborne TEM  VTEM data processing and interpretation  ATEM anomaly Maxwell plate modeling  polymetallic mineral exploration
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