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tag 标签: 频谱激电

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我在频谱激电方面开展的工作 期待合作
热度 4 chrujun 2016-5-31 23:37
最近几年,由于频谱激电在油气勘探、金属矿勘探和环境地球物理方面的潜在应用,频谱激电研究又火起来了。作为一直从事频谱激电研究的老兵,应法国科学院Revil教授请求对我在频谱激电方面的工作做了介绍。下面是2016年年初给Revil教授回信的主要内容: It’s my great pleasure to hear from you. I hope you have a great year in 2016. The year 2016 belongs to monkey year according to Chinese culture. Kind people in monkey year will be very smart and clever. Anyway, I summary my contribution to IP research. I developed method and instrument for SIP research and application. I put forward relative phase spectrum measurement method in SIP about 10 year ago. The relative phase spectrum measurement can remove EM coupling, capacitive coupling, and synchronization error in phase measurement of SIP. The relative phase spectrum measurement is the key for the successful application of SIP in the field. Then I developed a distributed SIP acquisition system with 800 channels based on ZigBee sensor network and GPS four years ago. It’s the biggest SIP system in the world to my knowledge. I used this SIP system in China for a lot of projects and it is very successful in mineral exploration. I also developed a SIP system for laboratory usage. This system can measure accurate SIP response of rock and ore sample with ultra-low impedance and ultra- high impedance. The highest impedance of sample can be great than 10 G ohm. Therefore, it can make SIP response of sample with very few water content. Now I am developing a SIP system based on wired network. This system is much cheap than the SIP system based on wireless communication targeted for mineral exploration in mountain area. The wired SIP system adopt the basic idea of cabled seismic acquisition. It reduce capacitive coupling that exist in current SIP system for engineering usage. The wired SIP system designed by me and my team achieved ultra- high synchronization accuracy which is vital important for signal to noise enhancement. The systems developed by me adopt ultra-low noise electrical element and state-of-art signal processing method. We can acquire good quality SIP data in area with strong noise or interference. 今年,我们将在频谱激电方面加大勘探力度和基础研究投入,使频谱激电成为矿业勘探的高效物探手段。我们有大量高质量勘探数据和岩矿石标本频谱激电数据,目前正和国外的多个团队开展合作。期待国内的同行也加入,大家共同推进频谱激电的发展。
个人分类: 我的科研|21658 次阅读|7 个评论
我的2015与2016
热度 5 chrujun 2015-12-30 16:31
我的 2015 与 2016 以前,我的精力主要放在地球物理仪器研发上。今年我主要考虑地质与地球物理的结合。 主要工作:岩矿石标本复电阻率精密测量,利用频谱激电区分矿与非矿异常,浅层高分辨率瞬变电磁探测技术。 国际交流:参加 SAGEEP , ICEG , AGU ,作口头报告 3 次,张贴报告 2 次。 国内交流:参加会议 4 次,作口头报告 3 次,张贴报告 2 次。 值得高兴的事儿:两位研究生毕业后进入华为,在华为被评为优秀员工。 明年主要工作:频谱激电区分矿与非矿异常,浅层瞬变电磁探测技术。
个人分类: 地球物理及仪器|15529 次阅读|5 个评论
多频激电可区分炭质岩石与金属矿异常
chrujun 2011-7-6 17:57
激电法是勘探斑岩型矿床的首要方法,因为斑岩型矿床能产生显著激电异常。但炭质岩石能产生更大激电异常,常规激电方法往往因炭质岩石干扰而失效。 Pelton等(1978)在多个矿山的大量测试结果表明,炭质岩石和硫化金属矿的极化时间常数相差5个数量级!这意味着它们的激电相位谱存在重大区别。我们的多次测试表明,两者相位谱在0.1-10HZ频段变化趋势正好相反。 在野外往往碰到同一测区同时存在炭质岩石和硫化金属矿。但由于炭质岩石和硫化金属矿的位置或深度不同,这个时候仔细研究激电测深曲线的相位谱变化规律,还是能够区分炭质岩石和金属矿产生的激电异常。 但频谱激电法很难区分黄铁矿和黄铜矿产生的激电异常,这个时候只能借助其它辅助手段来评价激电异常。
个人分类: 地球物理及仪器|4170 次阅读|0 个评论

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