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《Progress In Geophysics》 2004-02
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A case study in finding concealed ores by using geophysical exploration methods in combination of VLF-EM,EH4 and CSAMT

LIU Hong-tao1,YANG Xiu-ying2,YU Chang-ming1,YE Jie1,LIU Jian-ming1,ZENG Qing-dong1,SHI Kun-fa1(1. Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China;2. Songshan Bureau of Land Resources, Chifeng, Inner Mongolian 024000, China)  
VLF, EH4 and CSAMT geophysical systems belong to electromagnetic survey methods with varying detection resolutions, depths of penetration and extents of operating complexities linking to cost\|effective choices. Therefore, an appropriate surveying method or method combinations should be applied for different stages of exploration and detecting purposes. Because of its reconnaissance nature and low-cost operation, VLF is typically utilized as a routine geophysical survey to, fast and effectively, detect and delineate near-surface (burden thickness less than 50~60 m) extensions and general sizes of ore\|controlling structures in a relatively large area. As an alternative, CSAMT has a powerful capacity of deep penetration ( 2000 m), time\|effective, and ability of avoiding near\|field disturbance due to its artificially generated energy, is usually applied to detecting the 3\|D variations of ore\|fracture belts in a great depths and orientation tendencies with relatively low resolution. EH4 system is, up to date, the most effective electromagnetic method for metalliferous mineral explorations with high detecting resolution and appropriate depths of penetration (800~1 200 m) . It is frequently used to investigate the spatial variations, sizes, detailed geometries of orebodies in mineralized/alteration zones. The disadvantage of EH4 system comes from its susceptibility to near-field disturbance which is required to be avoided or minimized to a lowest level during field data\|collecting. These three geophysical exploration methods were applied in combination in a case study at Chaihulanzi gold deposit in order to optimize exploration programs by maximizing the rate of ground coverage and minimizing the drilling requirement, which finally turn out an expected and ideal results in finding out a big extension of orebodies, both vertically and laterally.
【Fund】: 中国科学院院知识创新工程重要方向项目《大兴安岭典型矿床建模、成矿规律研究及资源远景预测》(项目编号:KZCX3-SW-138)资助.
【CateGory Index】: P631
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