近景摄影测量在沿海地区地质生态条件调查中的应用(以葡萄牙为例)

Nino Chikhradze, Renato Henriques, M. Elashvili, G. Kirkitadze, Z. Janelidze, N. Bolashvili, G. Lominadze
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引用次数: 13

摘要

近距离数字摄影测量,涉及到无人机(UAV)的应用,已经在不同学科的不同应用中得到越来越多的应用。我们的目的是以葡萄牙西北沿海地区为例,将上述方法应用于当代沿海地区地质生态条件的调查中。海岸带可以被细分为两个地貌区域:第一部分,位于米尼奥河和埃斯皮尼奥镇之间,这里的海岸带由河口、露出岩石的沙质和砾石海滩以及全新世沙丘系统组成。河口和前丘尤其受到人类活动的严重破坏;第二区位于埃斯皮尼奥和蒙台哥角之间,那里有沿海泻湖和全新世沙丘系统。我们选择了两个海滩进行调查- Agucadoura和Ramalha,无人机秋千CAM拍摄了照片。我们使用地面控制软件eMotion 2来规划研究区域的飞行,并在飞行过程中控制无人机的轨迹。在AgisoftPhotoscanPro程序中对获取的图像进行处理后,生成研究剖面的二维正射影像图和三维数字高程模型(DEM)。在这个研究阶段,我们没有使用地面控制点,或者我们只使用相机的GPS数据,得出了上述产品。在这些模型的基础上,如果在选定的地面控制点(GCP)使用差分gps的大地测量装置精确计算模型的x、y和z值,则可以在地理信息系统中编制高分辨率(1cm-5cm)的大比例尺地图,用于监测和管理上述海滩的地质生态状况。
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Close Range Photogrammetry in the Survey of the Coastal Area Geoecological Conditions (on the Example of Portugal)
Close range digital photogrammetry, which involves the application of unmanned aerial vehicle (UAV), has been used in a growing number of diverse applications across different scientific disciplines. Our objective was to use the mentioned method in the survey of the contemporary geoecological conditions of the coastal area on the example of Portuguese northwest coastal zone. The coastal zone can be subdivided into two geomorphological sectors: Sector 1, between the Minho River and the town of Espinho, where the coastal segments consist of estuaries, sandy and shingle beaches with rocky outcrops, and Holocene dune systems. The estuaries and the foredunes in particular are very degraded by human activities; and Sector 2, between Espinho and the Mondego Cape, where coastal lagoons and Holocene dune systems occur. We chose two beaches for surveying – Agucadoura and Ramalha to which the drone swinglet CAM took the photos. We used the ground control software eMotion 2 to plan the flights over the study area and controlled the drone’s trajectory during flight. After processing the obtained images in the program of AgisoftPhotoscanPro, we generated the 2D orthophotos and 3D digital elevation models (DEM) of the research sections. At this stage of study we derived the above product without using the ground control points, or we used only the camera GPS data. Based on these models the compilation of the large-scale maps of high resolution (1cm-5cm) will be possible in the GISs for monitoring and management of the geoecological state of the mentioned beaches in case to precise the x, y and z values of the models with the geodetic device of Differential GPSs in the selected ground control points (GCP).
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