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Characterization of Terrestrial Discharges into Coastal Waters with Thermal Imagery from a Hierarchical Monitoring Program

机译:分层监测程序中利用热图像表征向沿海水域的陆地排放物

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Background: The hierarchical use of remotely-sensed imagery from satellites, and then proximally-sensed imagery from helicopter sand drones, can provide a range of spatial and temporal coverage that supports water quality monitoring of complex pollution scenarios. Methods: The study used hierarchical satellite-, helicopter-, and drone-acquired thermal imagery of coastal plumes ranging from 3 to 300 m, near Naples, Italy, and captured temporally- and spatially-overlapping in situ samples to correlate thermal and water quality parameters in each plume and the seawater. Results: In situ sampling determined that between-plume salinity varied by 37%, chlorophyll-a varied by 356%, dissolved oxygen varied by 81%, and turbidity varied by 232%. The radiometric temperature, T rad , for the plume area of interest had a correlation of 0.81 with salinity, 0.74 with chlorophyll-a, 0.98 with dissolved oxygen, and ?0.61 with turbidity. Conclusion: This study established hierarchical use of remote and proximal thermal imagery can provide monitoring of complex coastal areas.
机译:背景:分层使用卫星遥感图像,然后再使用直升机沙无人机近端遥感图像,可以提供一系列时空覆盖范围,从而支持对复杂污染情景的水质监测。方法:该研究使用分层卫星,直升机和无人机获取的意大利那不勒斯附近3至300 m沿海羽流的热图像,并捕获了时空重叠的原位样品,以将热和水质关联起来每个羽和海水中的参数。结果:原位采样确定,浮子间盐度变化了37%,叶绿素a变化了356%,溶解氧变化了81%,浊度变化了232%。感兴趣的羽流区域的辐射温度T rad与盐度的相关系数为0.81,与叶绿素a的相关系数为0.74,与溶解氧的相关系数为0.98,与浊度的相关系数为±0.61。结论:本研究建立了对远程和近端热成像的分层使用,可以提供对复杂沿海地区的监视。

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