ISSN 1005-2518
CN 62-1112/TF

Application of Controlled Source Audio-frequency Magnetotelluric (CSAMT) Measurement Method in Zhaishang Gold Mine

  • MU Yincai ,
  • LIU Cheng ,
  • TANG Gou ,
  • YAO Wei
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  • No.5 Gold Geological Party of CAPF

Received date: 2015-02-09

  Revised date: 2015-05-12

  Online published: 2015-12-09

Abstract

Due to the tertiary and quaternary strata overlay thickness on the surface of Zhaishang gold mine,it is difficult to position the deep orebody and surface prospecting.According to current situation of exploration,a good deal of work Controlled Source Audio-frequency Magnetotelluric measurements were carried out.In addition,through  CSAMT survey work at 16 lines in north and south ore belt,the results showed that there were significant differences between the north and the south mining area in resistivity.Through analyzing resistivity two-dimensional inversion of the 16 lines,it was found that Zhaimashu anticline displayed north step south slow,and a vertical form at karyomere.Broken alteration zone(orebody) was located in the high and low resistivity anomaly gradient belt,suggesting that there were 10 broken alteration zone,south and north ore belt each has 5 broken alteration zones,and the known structural belt and vein distribution sets was better.We completed the resistivity measurement at south ore belt area of the gold mine,43~95 line CSAMT joint profile measurement showed that the deep veins were larger prospecting space.The 35 series  in Zhamashu arch core overall exhibited north dipping with abnormal current larger depth,and the deep prospecting was potential.In general,controlled source audio-frequency magnetotelluric measurements can solve the problem of structure distribution,explore the south and north ore zone of deep vein distribution at the gold mine,which provides a theoretical basis for deep exploration.

Cite this article

MU Yincai , LIU Cheng , TANG Gou , YAO Wei . Application of Controlled Source Audio-frequency Magnetotelluric (CSAMT) Measurement Method in Zhaishang Gold Mine[J]. Gold Science and Technology, 2015 , 23(5) : 6 -13 . DOI: 10.11872/j.issn.1005-2518.2015.05.006

References

[1] 姜海平,陆志平,赵志龙,等.甘肃寨上金矿区地球物理和地球化学特征[J].黄金地质,2003,9(2):50-54.
[2] 岳连雄,杨高学,王彦明,等.甘肃寨上金矿综合信息找矿模型研究[J].黄金科学技术,2013,21(3):43-47.
[3] 路彦明,李汉光,陈勇敢,等.甘肃岷县寨上金矿地质地球化学特征及成因[J].地质与勘探,2006,42(4):25-31.
[4] 王增涛,杨晨,孙延光,等.甘肃寨上金矿床资源量可靠性审核方法探讨[J].黄金科学技术,2013,21(4):26-31.
[5] 郑振云,刘召军,郑洁.CSAMT法在甘肃寨上金矿区南矿带找矿中的应用[J].黄金科学技术,2014,22(2):13-16.
[6] 吕喜旺,刘新会,于岚,等.西秦岭寨上金矿床稀土元素和微量元素特征[J].地质找矿论丛,2007,22(3):201-205.
[7] 卢纪英,李作华,张复新.秦岭板块金矿床[M].西安:陕西科学技术出版社,2001:325-340.
[8] 张复新,于岚.秦岭造山带斜向俯冲—碰撞与南秦岭金—铅锌矿床成矿作用的响应[J].矿床地质,2002,21(增):297-300.
[9] 张复新,张旺定,张正兵.秦岭造山带金矿床类型与构造背景[J].黄金地质,2000,6(4):59-65.
[10] 刘新会,于岚,张复新,等.甘肃岷县寨上金矿床地质特征及成因初探[J].西北地质,2005,38(4):45-53.
[11] 牟银才,李福生,王增涛.甘肃省岷县寨上金矿带岩金普查地质设计(2015)[R].西安:武警黄金第五支队,2015:21-31.
[12] 路彦明.甘肃省岷县寨上金矿区深部及外围成矿规律及找矿预测[R].廊坊:武警黄金地质研究所,2004:49-63.
[13] 郭红乐,陆志平,刘爽,等.甘肃寨上卡林型金矿床地质特征与控矿因素[J].黄金地质,2003,9(3):21-26.
[14] 郑振云,刘召军,吕伟星.甘肃寨上矿区地物化信息找矿效果[J].物探与化探,2008,32(6):610-614.
[15] 刘诚,刘召军.甘肃省岷县寨上金矿带可控源音频大地电磁测量专题报告(2015)[R].西安:武警黄金第五支队,2015:11-41.

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