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Discrimination of iron ore deposits of granulite terrain of Southern Peninsular India using ASTER data

机译:利用ASTER数据判别印度南部半岛粒岩地形的铁矿石矿床。

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This work describes a new image processing technique for discriminating iron ores (magnetite quartz-ite deposits) and associated lithology in high-grade granulite region of Salem, Southern Peninsular India using visible, near-infrared and short wave infrared reflectance data of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER), image spectra show that the magnetite quartzite and associated lithology of garnetiferrous pyroxene granulite, hornblende biotite gneiss, amphibolite, dunite, and pegmatite have absorption features around spectral bands 1, 3, 5, and 7. ASTER band ratios ((1 + 3)/2, (3 + 5)/4, (5 + 7)/6) in RGB are constructed by summing the bands representing the shoulders of absorption features as a numerator, and the band located nearest the absorption feature as a denominator to map iron ores and band ratios ((2 + 4)/3, (5 + 7)/6, (7 + 9)/8) in RGB for associated lithology. The results show that ASTER band ratios ((1 + 3)/2, (3 + 5)/4, (5 + 7)/6) in a Red-Green-Blue (RGB) color combination identifies the iron ores much better than previously published ASTER band ratios analysis. A Principal Component Analysis (PCA) is applied to reduce redundant information in highly correlated bands. PCA (3, 2, and 1 for iron ores and 5, 4, 2 for granulite rock) in RGB enabled the discrimination between the iron ores and garnetiferrous pyroxene granulite rock. Thus, this image processing technique is very much suitable for discriminating the different types of rocks of granulite region. As outcome of the present work, the geology map of Salem region is provided based on the interpretation of ASTER image results and field verification work. It is recommended that the proposed methods have great potential for mapping of iron ores and associated lithology of granulite region with similar rock units of granulite regions of Southern Peninsular India. This work also demonstrates the ability of ASTER'S to provide information on iron ores, which is valuable for mineral prospecting and exploration activities.
机译:这项工作描述了一种新的图像处理技术,该技术使用先进的星载热成像仪的可见,近红外和短波红外反射率数据来区分印度南部半岛塞勒姆的高级花岗石地区中的铁矿石(磁铁矿石英岩矿床)和相关岩性。发射和反射辐射计(ASTER)的图像光谱显示,磁铁矿石英岩和石榴石亚铁辉石花岗石,角闪石黑云母片麻岩,闪石,榴辉岩和伟晶岩的相关岩性在光谱带1、3、5和7附近具有吸收特征。 RGB中的比率((1 + 3)/ 2,(3 + 5)/ 4,(5 + 7)/ 6)是通过将代表吸收特征的肩部的谱带相加为分子而构成的,并且该谱带最靠近吸收特征作为分母来映射铁矿石和RGB在相关岩性中的谱带比((2 + 4)/ 3,(5 + 7)/ 6,(7 + 9)/ 8)。结果表明,红绿蓝(RGB)颜色组合中的ASTER谱带比率((1 + 3)/ 2,(3 + 5)/ 4,(5 + 7)/ 6)可以更好地识别铁矿石比以前发表的ASTER频带比率分析。应用主成分分析(PCA)可以减少高度相关频段中的冗余信息。 RGB中的PCA(铁矿石为3、2和1,花岗石为5、4、2)可区分铁矿石和石二茂铁辉石花岗石。因此,这种图像处理技术非常适合于区分不同类型的花岗石区域的岩石。作为当前工作的结果,基于对ASTER图像结果的解释和现场验证工作,提供了Salem地区的地质图。建议所建议的方法具有很大的潜力,可用于绘制铁矿和与印度南部半岛粒岩区相似岩石单元的粒岩区相关岩性。这项工作还证明了ASTER'S提供铁矿石信息的能力,这对矿物勘探和勘探活动具有重要意义。

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