首页> 外文会议>International Society for Photogrammetry and Remote Sensing Commission Technical Commission Symposium >APPLYING ADVANCED SPACEBORNE THERMAL EMISSION AND REFLECTION RADIOMETER (ASTER) SPECTRAL INDICES FOR GEOLOGICAL MAPPING AND MINERAL IDENTIFICATION ON THE TIBETAN PLATEAU
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APPLYING ADVANCED SPACEBORNE THERMAL EMISSION AND REFLECTION RADIOMETER (ASTER) SPECTRAL INDICES FOR GEOLOGICAL MAPPING AND MINERAL IDENTIFICATION ON THE TIBETAN PLATEAU

机译:应用高级星载热排放和反射辐射计(Aster)藏高原地质测绘和矿物质识别的光谱指标

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The Tibetan Plateau holds clues to understanding the dynamics and mechanisms associated with continental growth. Part of the region is characterized by zones of ophiolitic melange believed to represent the remnants of ancient oceanic crust and underlying upper mantle emplaced during oceanic closures. However, due to the remoteness of the region and the inhospitable terrain many areas have not received detailed investigation. Increased spatial and spectral resolution of satellite sensors have made it possible to map in greater detail the mineralogy and lithology than in the past. Recent work by Yoshiki Ninomiya of the Geological Survey of Japan has pioneered the use of several spectral indices for the mapping of quartzose, carbonate, and silicate rocks using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) thermal infrared (TIR) data. In this study, ASTER TIR indices have been applied to a region in western-central Tibet for the purposes of assessing their effectiveness for differentiating ophiolites and other lithologies. The results agree well with existing geological maps and other published data. The study area was chosen due to its diverse range of rock types, including an ophiolitic melange, associated with the Bangong-Nujiang suture (BNS) that crops out on the northern shores of Lagkor Tso and Dong Tso ('Tso' is Tibetan for lake). The techniques highlighted in this paper could be applied to other geographical regions where similar geological questions need to be resolved. The results of this study aim to show the utility of ASTER TIR imagery for geological mapping in semi-arid and sparsely vegetated areas on the Tibetan Plateau.
机译:西藏高原举行了解与大陆增长相关的动态和机制的线索。该地区的一部分的特征在于眼镜般的混合物区域,认为在海洋封闭期间擅自灌输的古海壳和底层地幔的残余物。但是,由于该地区的远程和荒地的地形许多地区尚未收到详细的调查。卫星传感器的增加的空间和光谱分辨率已经使得可以更详细地映射矿物学和岩性比过去。 Yoshiki Ninomiya对日本地质调查的Yoshiki Ninomia的工作已经开创了使用高级星弓粒,碳酸盐和硅酸盐岩石映射的几种光谱指标,使用先进的星载热排放和反射辐射计(紫色)热红外(TIR)数据。在这项研究中,艾斯特TIR指数已被应用于西藏西部的一个地区,以便评估它们对鉴别眼镜和其他岩性的有效性。结果与现有地质地图和其他已发布的数据一致。由于其各种岩石类型,包括蒙古 - 怒江缝合(BNS)的不同范围的岩石类型,包括一个不同的岩石类型,包括在Lagkor Tso和Dong Tso('TSO'是湖的北部岸边)。本文突出显示的技术可以应用于其他地理区域,需要解决类似的地质问题。本研究的结果旨在展示ASTER TIR IMIGERY在藏高高原上半干旱和稀疏植被地区的地质映射的效用。

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