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地震CT在寻找隐伏铜镍矿中的应用
引用本文:赵永贵,王超凡,陈燕民,勒洪晓,郭鸿,任汉章,卢建全.地震CT在寻找隐伏铜镍矿中的应用[J].地球物理学报,1996,39(2):272-278.
作者姓名:赵永贵  王超凡  陈燕民  勒洪晓  郭鸿  任汉章  卢建全
作者单位:1. 中国科学院地质研究所, 北京 100029; 2. 金川有色金属公司龙首矿, 金昌 737104
摘    要:用透射地震CT方法在金川龙首矿进行了隐伏铜镍矿体的探测试验.试验是在地下500m的1280平面上进行的,覆盖面积300m×300m.使用ES-2401X型48道高分辨数字地震仪.铜镍矿体为高波速值的超基性侵入岩,采用纵波速度作为层析物理量是敏感的.研究区划分成81×64个单元,单元体大小为4m×4m.有效地震射线7619条,使用联合迭代重建法(SIRT)求解慢度走时方程.速度图像及地质解释表明测区中西部有一个高波速异常体,推断与含铜镍矿体或花岗体有关;此外还发现一条近东西向的低波速带,推断为断裂.

关 键 词:地震CT  波速  慢度  铜镍矿  
收稿时间:1995-03-02

SEISMIC TOMOGRAPHY AND ITS APPLICATION TO PROSPECTING OF CONCEALED NICKEL-COPPER ORE
ZHAO YONG-GUI, WANG CHAO-FAN, CHEN YAN-MIN, JIN HONG-XIAO, GUO HONG.SEISMIC TOMOGRAPHY AND ITS APPLICATION TO PROSPECTING OF CONCEALED NICKEL-COPPER ORE[J].Chinese Journal of Geophysics,1996,39(2):272-278.
Authors:ZHAO YONG-GUI  WANG CHAO-FAN  CHEN YAN-MIN  JIN HONG-XIAO  GUO HONG
Affiliation:1. Institute of Geology, Academic Sinica, Beijin, 100029, China; 2. Longsou Mine, Jinchuan Nonferrous Metal Corporation, Jinchang 737104, China
Abstract:Seismic Tomography Technique is applied to prospecting test of concealed Nickel-Copper ore in Jinchuan Longshou Mine, Northwest China. The prospecting test covers an area of 300m×300m in the depth of 500m underground. The equipment used is ES-2401X 48-channel Seismography. The Frequency bandwidth is selected from 400Hz to 4000Hz. The software of seismic tomography is developed by Institute of Geology, Academia Sinica. The test area is divided into total 81×64elements, individual size 4m×4m. The seismic waves are excited by dynamic source of 50g. Total 165 effective shots are available, and 7619 seismic rays are calculated into velocity imaging. The velocity image shows there is a high velocity zone of 40m×40m, with value over 5.3km/s, in the west part of the test area,deduced as a Nickel-Copper ore bearing district, and a low velocity belt in width of 10m in the middle from east to west, infered as a fault. Drilling confirms thees interpertation true.
Keywords:Seismic Tomography  Velocity  Slown  Nickel-Copper ore    
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