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Interpretation and Processing of ETM+ Data for Alteration Mapping A Case Study: Behabad , Iran

机译:用于变更映射的ETM +数据的解释和处理案例研究:伊朗Behabad

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Many ore deposits are first detected in the field by the recognition of hydrothermally altered host rocks, and are typically zonally distributed. Ore deposits are often produced by fluid flow processes that alter the mineralogy and chemistry of the country rock. One of the main reason for extention using a multi-spectral and hyperspectral sensor is due to detect the optical characteristics of the Earth's surface using hundreds of spectral bands. All previous studies show that remote sensing has a important impress to detection alteration zones one of the most important steps in exploration studies is indicating the productive geological units that are the result of surface features caused by effective factors in forming a deposit. Thus, Figuring out the regions with potential of a hydrothermal alteration could be one of the important factor in recognizing the regions of these deposits. In this study We used different image analysis methods such as Ls-fit and Crosta method and Band Ratio and False Color Composite methods for detection of mineralogy and alteration on a set of ETM+ data of Behabad zone, central of Iran. At the end We identified several alteration minerals within the study area. We successfully detected and mapped hydrothermal alteration and minerals such as chlorite minerals, epidotes and gypsum . The result shows hydrothermal alteration, which can be a model in indicating the productive units in this region.
机译:首先通过识别热液蚀变的母岩在田间发现了许多矿床,并且通常是按区域分布的。矿石沉积物通常是通过流体流动过程产生的,这些过程改变了乡村岩石的矿物学和化学性质。使用多光谱和高光谱传感器进行扩展的主要原因之一是要使用数百个光谱带检测地球表面的光学特性。以前的所有研究表明,遥感对探测蚀变带具有重要的影响,这是勘探研究中最重要的步骤之一,它表明生产性地质单元是由形成矿床的有效因素引起的地表特征的结果。因此,找出具有热液蚀变潜力的区域可能是识别这些矿床区域的重要因素之一。在这项研究中,我们使用了不同的图像分析方法,例如Ls-fit和Crosta方法以及能带比和假色复合方法,对伊朗中部Behabad区的一组ETM +数据进行了矿物学和蚀变检测。最后,我们确定了研究区域内的几种蚀变矿物。我们成功地检测并绘制了热液蚀变和矿物图,例如绿泥石矿物,epi石和石膏。结果表明水热蚀变,可以作为指示该地区生产单位的模型。

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