Thermal Remote Sensing for Water Outflows Detection and Determination of the Role of Lineaments in Underground Hydrodynamics of Evia Island, Central Greece

Laoura Athanasiadou, E. Psomiadis, G. Stamatis
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引用次数: 1

Abstract

The coastal karst system of Evia Island is developed due to the extended presence of carbonate formations, discharges into the sea either at the coastal zone or via submarine springs, having a direct relation to the tectonic system of the area. Thermal infrared remote sensing has been proved its capability in monitoring thermal differentiations of coastal water plumes. This work aims to locate the freshwater outflows through remote sensing and specific with the use of Landsat’s 8 thermal images and to reveal how the lineaments of the area control this karstification process. L8 contains two thermal bands (Band 10, high gain and Band 11, low gain) with resolution 30m which record the scattering of infrared radiation from the sea surface. Spectral Band 10 was selected due to the high gain characteristics which provide more suitable radiometric resolution (sensitivity). Finally, combing thermal images with geological maps, sea surface temperature (SST) maps have been created.
热遥感对希腊中部Evia岛地下流体动力学中轮廓的探测和作用的确定
埃维亚岛的海岸喀斯特体系是由于碳酸盐地层的广泛存在而发展起来的,它们或在海岸带排放,或通过海底温泉排放入海,与该地区的构造体系有直接关系。热红外遥感技术在沿海水羽热分异监测中的应用已经得到了验证。这项工作旨在通过遥感和Landsat的8张热图像来定位淡水流出,并揭示该地区的地形如何控制这一岩溶过程。L8包含两个热波段(波段10,高增益和波段11,低增益),分辨率为30m,记录了海面红外辐射的散射。选择光谱波段10是由于高增益特性,提供更合适的辐射分辨率(灵敏度)。最后,将热像图与地质图相结合,生成海温图。
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