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Advanced Remote Lithologic Mapping in Ophiolite Zone with ASTER Multispectral Thermal Infrared Data

机译:具有Aster MultiSpectral热红外数据的Ophiolite区的高级远程岩性映射

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ASTER is the first and the only satellite-borne imaging sensor with a capability of multispectral observation in the thermal infrared (TIR; 8 to 12 microns) spectral region at spectral, radio metric and spatial resolutions adequate for regional geological study. Most of the methods for lithologic or mineralogic mapping with multispectral TIR remote sensing data proposed so far premises to apply emissivity data as input, but methods applying Level-IB radiance at the sensor data without atmospheric corrections have an advantage in data productivity. Another advantage of the methods for Level-IB is the extendibility for Level-3A data, enables easy fusion with GIS. The author proposed Quartz Index (QI), Carbonate Index (CI) and bulk SiO{SUB}2 content Index (SI) for ASTER-TIR data with theoretical and practical analyses for the applicability of Level-IB data, improved the indices, and showed that the lithologic mapping with the indices for Level-IB data is stable against the variation of temperature and atmospheric conditions. In this paper, the method is applied to several Level-3A data scenes observing a part of Yarlung Zangbo ophiolite belt in Tibet, and the results are compared with the existing geological information to show the effectiveness of the method for achieving lower cost and higher accuracy in geological mapping, especially in mapping ultra mafic rock bodies.
机译:艾斯特是第一和唯一卫星传播的成像传感器,具有在热红外(TIR; 8至12微米)光谱区域中的多光谱观察能力,可用于区域地质研究的适当的频谱,无线电度量和空间分辨率。大多数具有多光谱TIR遥感数据的岩性或矿物学映射的方法,所提出的是将发射率数据应用为输入,但是在没有大气校正的情况下,在没有大气校正的传感器数据上应用电平-IB辐射的方法具有数据生产率的优势。级别-IB方法的另一个优点是Level-3a数据的可扩展性,可以轻松与GIS融合。作者提出了Quartz指数(QI),碳酸盐指数(CI)和Bulk SIO {Sub} 2内容索引(SI),用于AST-TIR数据,具有理论和实际分析,用于适用于IB数据的适用性,改进指数,以及表明,岩性映射与级别IB数据的指标稳定,符合温度和大气条件的变化。在本文中,该方法应用于观察西藏yarlung Zangbo眼骨带的几个水平-3a数据场景,并将结果与​​现有地质信息进行比较,以显示实现较低成本和更高精度的方法的有效性在地质映射中,尤其是在映射超镁岩石体中。

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