Abstract

철광산 지역에서 획득한 시추자료와 물리탐사자료를 복합 분석하여 3차원 광체모델링을 수행하였다. 지질조사 및 시추조사 자료를 통해 획득한 5가지 대표 암종에 지수를 부여하였고, 이를 이용하여 광체의 범위를 효율적으로 결정하기 위해 지구통계학적 순차 지표 시뮬레이션(Sequential Indicator Simulation)을 실시하였다. 그리고 전기비저항 탐사 자료와 자기지전류 탐사 자료를 이용한 부가적인 자료를 생성하기 위해 정규크리깅(Ordinary Kriging)과 순차가우스시뮬레이션(Sequential Gaussian Simulation)을 사용하였다. 시추자료에서 획득한 입력변수와 전기비저항자료 간의 상관관계를 분석하여 지구통계학적 복합 분석에 적용하였다. 상관관계 분석 결과, 밀도가 높아질수록 전기비저항이 낮아지는 관계를 확인할 수 있었으며, 이를 통해서 다변량 크리깅 중 하나인 가변적 지역평균 크리깅(Simple Kriging with Local varying means)을 적용하여 지수를 이용한 광체의 모델과 품위 자료를 이용한 품위 분포 모델을 생성하였다. 광체 모델링 결과, 실제 채굴도와 유사한 결과를 확보할 수 있었고, 품위자료에 대한 모델링 결과는 품위별 위치에 따른 변화 정보를 제공하였다. 3-D ore modeling was performed to understand the configuration of ore bodies by integrated analysis of borehole and geophysical data in iron-mine area. Five representative indices of rocks were designated, which were obtained from geological survey and borehole. The five indices of rocks were geostatistically simulated by Sequential Indicator Simulation method to delineate boundary of the ore bodies. And Ordinary Kriging and Sequential Gaussian Simulation was applied to make secondary information using resistivity data from magnetotellurics and DC resistivity survey, and this information was used for simple kriging with local varying means, one of integrated kriging techniques. From the correlation analysis between each properties, it was found that high grade of ore is characterized by increased density, whereas the electrical resistivity decreases. With the integrated results of geophysical and borehole data, it was also found that the real configuration of ore body was similar to the modeled result and information about ore grade in 3-D space was obtained.

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