中国自然资源航空物探遥感中心主办
地质出版社出版

无人直升机航磁方法在安徽省马鞍山市向山南—大甸塘地区铁矿普查中的应用

陈伟, 赵国凤, 费振正, 罗丁, 彭江英, 黄岩, 贾朔. 2021. 无人直升机航磁方法在安徽省马鞍山市向山南—大甸塘地区铁矿普查中的应用. 物探与化探, 45(4): 890-897. doi: 10.11720/wtyht.2021.1382
引用本文: 陈伟, 赵国凤, 费振正, 罗丁, 彭江英, 黄岩, 贾朔. 2021. 无人直升机航磁方法在安徽省马鞍山市向山南—大甸塘地区铁矿普查中的应用. 物探与化探, 45(4): 890-897. doi: 10.11720/wtyht.2021.1382
CHEN Wei, ZHAO Guo-Feng, FEI Zhen-Zheng, LUO Ding, PENG Jiang-Ying, HUANG Yan, JIA Shuo. 2021. The application of unmanned helicopter aeromagnetic method to the survey of the iron deposit in Xiangshannan-Dadiantang area, Ma’anshan City, Anhui Province. Geophysical and Geochemical Exploration, 45(4): 890-897. doi: 10.11720/wtyht.2021.1382
Citation: CHEN Wei, ZHAO Guo-Feng, FEI Zhen-Zheng, LUO Ding, PENG Jiang-Ying, HUANG Yan, JIA Shuo. 2021. The application of unmanned helicopter aeromagnetic method to the survey of the iron deposit in Xiangshannan-Dadiantang area, Ma’anshan City, Anhui Province. Geophysical and Geochemical Exploration, 45(4): 890-897. doi: 10.11720/wtyht.2021.1382

无人直升机航磁方法在安徽省马鞍山市向山南—大甸塘地区铁矿普查中的应用

  • 基金项目:

    安徽省地质勘查基金项目(2016-1-01)

    江苏省地质矿产勘查局科技创新平台

    航空对地探测技术研究中心科研项目(201604200)

详细信息
    作者简介: 陈伟(1989-),男,2012年毕业于中国地质大学(武汉)地球物理学专业,工程师,主要从事航空物探与遥感勘查工作。Email:894187326@qq.com
  • 中图分类号: P631

The application of unmanned helicopter aeromagnetic method to the survey of the iron deposit in Xiangshannan-Dadiantang area, Ma’anshan City, Anhui Province

  • 本文以宁芜火山盆地向山南—大甸塘地区为例,利用地质、无人直升机航磁等方法进行老矿山深部及外围找矿工作的探索。通过对航磁异常进行综合分析和精细反演来确定钻孔位置。布设的所有钻孔均在老矿山深部见矿,该结果证明了本方法的有效性,为今后类似工作条件的地区快速有效开展老矿山深部及外围找矿工作提供参考。
  • 加载中
  • [1]

    王柳松. 危机矿山接替资源找矿专项效益评价研究[D]. 北京:中国地质大学(北京), 2013.

    [2]

    Wang L S. The effect evaluation of prospecting work of substitute resources for crisis mines[D]. Beijing: China University of Geosciences (Beijing), 2013.

    [3]

    张博, 史瑾瑾. 老矿山接替资源找矿项目社会经济效益评价研究[J]. 中国矿业, 2015,24(13):178-181.

    [4]

    Zhang B, Shi J J. The social and economic benefits evaluation of the old mine exploration for continued resource[J]. China Mining Magazine, 2015,24(13):178-181.

    [5]

    侯可军, 袁顺达. 宁芜盆地火山—次火山岩的锆石U-Pb年龄、Hf同位素组成及其地质意义[J]. 岩石学报, 2010,26(3):888-902.

    [6]

    Hou K J, Yuan S D. Zircon U-Pb age and Hf isotopic composition of the volcanic[J]. Acta Petrologica Sinica, 2010,26(3):888-902.

    [7]

    段超, 李延河, 袁顺达, 等. 宁芜矿集区凹山铁矿床磁铁矿元素地球化学特征及其对成矿作用的制约[J]. 岩石学报, 2012,28(1):243-257.

    [8]

    Duan C, Li Y H, Yuan S D, et al. Geochemical characteristics of magnetite from Washan iron deposit in Ningwu ore district and its constraints on ore-forming[J]. Acta Petrologica Sinica, 2012,28(1):243-257.

    [9]

    谢祖军. 安徽省马鞍山市凹山矿床流化作用及边深部找矿潜力探讨[J]. 安徽地质, 2013,23(4):269-274.

    [10]

    Xie Z J. Fluidization and the prospecting potential in the deep margin of aoshan deposits in Maanshan city, Anhui province[J]. Anhui Geology, 2013,23(4):269-274.

    [11]

    张景, 陈国光, 张明, 等. 宁芜盆地白象山矿区物化探异常特征及找矿意义[J]. 华东地质, 2016,37(2):147-151.

    [12]

    Zhang J, Chen G G, Zhang M, et al. Geophysical and geochemical anomalies of Baixiangshan mine district in the Ningwu basin and their prospecting significance[J]. East China Geology, 2016,37(2):147-151.

    [13]

    张景, 陈国光, 曾勇, 等. 综合找矿方法在宁芜北火山岩覆盖区的应用[J]. 华东地质, 2016,37(3):221-228.

    [14]

    Zhang J, Chen G G, Zeng Y, et al. Application of the integrated ore-prospecting methods in the northern Ningwu volcanic covering areas: An example from the Nanmentou work area[J]. East China Geology, 2016,37(3):221-228.

    [15]

    Roelof V, Mark M, Matt A, et al. Feasibility study for an autonomous UAV magnetometer system[R]. United States: Idaho National Laboratory, 2007.

    [16]

    Hitoshi M, Satoshi T, Yumiko O, et al. A development of airborne survey of gravity and magnetics on an unmanned helicopter and its data processing[C]// Japan Geoscience Union meeting, 2013.

    [17]

    西永在, 路宁, 张兰, 等. 基于无人直升机平台的航磁系统集成与应用[J]. 物探与化探, 2019,43(1):125-131.

    [18]

    Xi Y Z, Lu N, Zhang L, et al. Integration and application of an aeromagnetic survey system based on unmanned helicopter platform[J]. Geophysical and Geochemical Exploration, 2019,43(1):125-131.

    [19]

    黄岩, 罗丁, 冯自成, 等. 无人直升机航磁测量系统集成及应用[J]. 物探与化探, 2019,43(2):386-392.

    [20]

    Huang Y, Luo D, Feng Z C, et al. Unmanned helicopter aeromagnetic measurement system and its application[J]. Geophysical and Geochemical Exploration, 2019,43(2):386-392.

    [21]

    熊盛青, 于长春, 眭素文, 等. 中高山区高精度航磁方法技术[M]. 北京: 地质出版社, 2009.

    [22]

    Xiong S Q, Yu C C, Sui S W, et al. High-precision aero-magnetic survey in medium-height mountains areas [M]. Beijing: Geological Publishing House, 2009.

    [23]

    中国地质调查局自然资源航空物探遥感中心. AGRS GeoProbe地球物理数据处理解释系统用户手册[R]. 中国地质调查局自然资源航空物探遥感中心, 2012.

    [24]

    China Aero Geophysical Survey and Remote Sensing Center for Natural Resources. AGRS GeoProbe geophysical data processing interpretation system user manual[R]. China Aero Geophysical Survey and Remote Sensing Center for Natural Resources, 2012.

  • 加载中
计量
  • 文章访问数:  433
  • PDF下载数:  79
  • 施引文献:  0
出版历程
收稿日期:  2020-07-31
修回日期:  2021-08-20
刊出日期:  2021-08-20

目录