世界地质    2018 37 (2): 595-601   ISSN: 1004-5589  CN: 22-1111/P  

低飞航磁技术在江西朱溪矿区中的应用
张爽1, 张楠2, 吴贺宇1, 李禄1, 任俊龙1, 吴燕冈1
1. 吉林大学 地球探测科学与技术学院, 长春 130026;
2. 中色地科矿产勘查股份有限公司, 北京 100012
收稿日期 2017-12-09  修回日期 2018-02-26  网络版发布日期 null
参考文献  [1] 王先广, 刘建光, 陈国华, 等. 江西朱溪钨铜矿找矿进展及建议[J]. 地质学刊, 2014, 38(3):483-491. WANG Xian-guang, LIU Jian-guang, CHEN Guo-hua, et al. Progress and suggestions on mineral prospecting in Zhuxi, Jiangxi[J]. Journal of Geology, 2014, 38(3):483-491.
[2] 黄传冠, 刘春根, 丁少辉, 等. 江西省主要矿产预测类型及其地质特征[J]. 资源调查与环境, 2015, 36(3):196-202. HUANG Chuan-guan, LIU Chun-gen, DING Shao-hui, et al. The main mineral prediction tyes and geological characteristics of Jiangxi Province[J]. Resources Survey & Environment, 2015, 36(3):196-202.
[3] 陈小勇, 谢有炜, 丁明, 等. 江西崇义牛角窝钨多金属"三位一体" 矿床类型及成矿机制探讨[J]. 中国钨业, 2013, 28(6):8-12. CHEN Xiao-yong, XIE You-wei, DING Ming, et al. The "Three-in-One" deposit type and metallogenic mechanism of Niujiaowo polyetallic mine in Chongyi, Jiangxi Province[J]. China Tungsten Industry, 2013, 28(6):8-12.
[4] 杜慧文, 王相泰. 金属矿区磁法勘探的进展与展望[J]. 有色金属文摘, 2015, 30(3):23-24. DU Hui-wen, WANG Xiang-tai. The progress and prospect of magnetic exploration in metal mineral area[J].Nonferrous Metals Abstract, 2015, 30(3):23-24.
[5] 苏晓云. 江西朱溪钨铜矿矿床地质特征及矿床地球化学研究:硕士学位论文[D]. 北京:中国地质大学, 2014. SU Xiao-yun. Geological characteristic and geochemical study of the tungsten copper deposit in Zhuxi,Jiangxi Province:master's degree thesis[D].Beijing:China University of Geosciences,2014.
[6] 夏中智, 王先广, 马振兴, 等. 江西省朱溪钨(铜)矿集区构造控矿规律研究[C]//2016年江西省地质学会论文汇编集Ⅲ, 2017:12. XIA Zhong-zhi, WANG Xian-guang, MA Zhen-xing, et al. Study on the tectonic control law of tungsten copper mine in Zhuxi,Jiangxi Province[C]//Ⅲ Collection of Paper of Geological Society of Jiangxi Province in 2016,2017:12.
[7] 陈国华. 江西景德镇朱溪钨铜多金属矿床地质特征与控矿条件研究:硕士学位论文[D].南京:南京大学,2014. CHEN Guo-hua. Geological characteristics and control conditions of tungsten copper polymetallic deposits in Jingdezhen,Jiangxi Province:master's degree thesis[D].Nanjing:Nanjing University,2014.
[8] 刘建光, 何细荣, 万浩章, 等. 江西朱溪钨铜矿突出特征与巨型矿床的发现[C]//中国地质学会2013年学术年会论文摘要汇编.SO2资源与环境地球物理勘查理论与方法技术, 昆明,2013. LIU Jian-guang, HE Xi-rong, WAN Hao-zhang, et al. The prominent features and the discovery of gaint deposit in Zhuxi, Jiangxi Province[C]//The Abstract of the Annoual Meeting of the Geological Society in 2013:SO2 Resource and Environmental Geophysical Exploration in the Direction of Theory and Method Technology,Kunming,2013.
[9] 曹骏. 下扬子地区构造演化及勘探有利区优选[J]. 中国石油和化工标准与质量, 2013,33(23):51-52. CAO Jun. The development of the lower Yangtze region and the favorable selection of exploration[J]. China Petroleum and Chemical Standards and Quality, 2013, 33(23):51-52.
[10] 杨兵. 长江中下游成矿带的构成与形成机制[J]. 有色金属矿产与勘查, 1999, 8(5):270-276. YANG Bing. The formation of the metallogenic belt and the formation mechanism of the middle and lower reaches of Yangtze River[J]. The Minerals and Explorations of Nonferrous Metals, 1999, 8(5):270-276.
[11] 徐立忠, 张楠, 贾嵩, 等. 动力三角翼航磁在多宝山矿区的应用效果[J]. 价值工程, 2017, 36(26):168-173. XU Li-zhong, ZHANG Nan, JIA Song, et al. Application of dynamic delta wing aeromagnetic in Duobaoshan Ore District[J]. Value Engineering, 2017, 36(26):168-173.
[12] 黄为俊, 张楠, 贾嵩, 等. 动力三角翼低空磁测在多宝山地区的应用效果[J]. 世界地质, 2017, 36(1):241-245. HUANG Wei-jun, ZHANG Nan, JIA Song, et al. Application effect of magnetic survey with dynamic delta wing at low altitude in Duobanshan area[J]. Global Geology, 2017, 36(1):241-245.
[13] 黄为俊. 动力三角翼低空磁测资料在多宝山铜矿勘查中的应用研究:硕士学位论文[D]. 长春:吉林大学, 2017. HUANG Wei-jun. The research on the application of low-altitude magnetic data of the dynamic delta wing in the exploration of the Duobaoshan copper mine:master's degree thesis[D]. Changchun:Jilin University, 2017.
[14] 王浩臣, 刘庆成, 邓居智, 等. 磁异常化极效果的研究[J]. 东华理工大学学报(自然科学版), 2013, 36(1):57-62. WANG Hao-chen, LIU Qing-cheng, DENG Ju-zhi, et al. Study on the effect of magnetic anomaly[J]. Technology Journal of Donghua University (Natural Science Edition),2013,36(1):57-62.
[15] 郭华, 王平, 朱春华, 等. 向上延拓对航磁梯度数据的影响及其规律研究[J]. 地球物理学进展, 2015,30(3):1214-1223. GUO Hua, WANG Ping, ZHU Chun-hua, et al. The regular study of gradien interpretation with the upward continuation method in the frequency domain[J]. Progress in Geophysics, 2015,30(3):1214-1223.
[16] 吴文贤, 范文玉, 王永华, 等. 基于总梯度模分析的磁源体边界信息提取及找矿意义[J]. 地质与勘探, 2013, 49(6):1164-1169. WU Wen-xian,FAN Wen-yu, WANG Yong-hua, et al. Determination of the magnetic source boundary based on total gradient module analysis and its prospecting significance[J]. Geology and Exploration, 2013, 49(6):1164-1169.
[17] 郭华, 于长春, 吴燕冈. 改进的斜导数方法及应用[J]. 物探与化探, 2009, 33(2):212-216. GUO Hua, YU Chang-chun, WU Yan-gang. Improved oblique derivative method and application[J]. Geophysical & Geochemical Exploration,2009, 33(2):212-216.

通讯作者: 吴燕冈(1954-),女,教授,主要从事应用地球物理方法技术研究.E-mail:yangangwu341@yahoo.com.cn