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A stable downward continuation of airborne magnetic data: A case study for mineral prospectivity mapping in Central Iran

机译:机载磁数据的稳定向下延续:以伊朗中部矿产前景图为例

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摘要

Previous studies have shown that a well-known multi-criteria decision making (MCDM) technique called Preference Ranking Organization METHod for Enrichment Evaluation (PROMETHEE II) to explore porphyry copper deposits can prioritize the ground-based exploratory evidential layers effectively. In this paper, the PROMETHEE II method is applied to airborne geophysical (potassium radiometry and magnetometry) data, geological layers (fault and host rock zones), and various extracted alteration layers from remote sensing images. The central Iranian volcanic-sedimentary belt is chosen for this study. A stable downward continuation method as an inverse problem in the Fourier domain using Tikhonov and edge-preserving regularizations is proposed to enhance magnetic data. Numerical analysis of synthetic models show that the reconstructed magnetic data at the ground surface exhibits significant enhancement compared to the airborne data. The reduced-to-pole (RTP) and the analytic signal filters are applied to the magnetic data to show better maps of the magnetic anomalies. Four remote sensing evidential layers including argillic, phyllic, propylitic and hydroxyl alterations are extracted from Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images in order to map the altered areas associated with porphyry copper deposits. Principal component analysis (PCA) based on six Enhanced Thematic Mapper Plus (ETM + ) images is implemented to map iron oxide layer. The final mineral prospectivity map based on desired geo-data set indicates adequately matching of high potential zones with previous working mines and copper deposits.
机译:先前的研究表明,一种著名的多标准决策(MCDM)技术,即用于评价斑岩铜矿床的富集评估优先排序组织METHod(PROMETHEE II),可以有效地优先处理地基勘探证据层。本文将PROMETHEE II方法应用于机载地球物理(钾辐射和磁力计)数据,地质层(断层和主岩层)以及从遥感影像中提取的各种蚀变层。本研究选择了伊朗中部火山沉积带。提出了一种稳定的向下连续方法,作为傅立叶域中使用Tikhonov和边沿保留正则化的反问题,以增强磁数据。合成模型的数值分析表明,与机载数据相比,在地面重建的磁数据显示出明显的增强。磁极减小(RTP)和分析信号滤波器应用于磁数据,以显示磁异常的更好图。从先进的星载热发射和反射辐射计(ASTER)图像中提取了四个遥感证据层,其中包括藻,铜,叶,丙,羟基的变化,以便绘制与斑岩铜矿床相关的变化区域。基于六张增强的专题贴图专家(ETM +)图像的主成分分析(PCA)用于绘制氧化铁层。基于所需地理数据集的最终矿产前景图表明,高潜力区与先前的开采矿山和铜矿床已充分匹配。

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