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APPLIED 3D PHOTOGRAMMETRIC STUDIES FOR THE HISTORICAL HERITAGE OF EXTREMADURA (SPAIN)

机译:应用3D摄影测量研究史雷亚杜拉历史遗产(西班牙)

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The region of Extremadura, in the southwest of Spain, contains three locations that have been declared UNESCO World Heritage Sites: the Old City of Caceres (1986), the Archeological Ensemble of Merida (1993), and the Royal Monastery of Our Lady of Guadalupe (1993). In the Geomatic Engineering and Urban Heritage Research Group of the University of Extremadura, we are working on a Regional Research Project entitled "Precision three-dimensional modeling, study of structural pathologies and virtual walks through the historical and cultural heritage of Extremadura", in which we create 3D models of some emblematic buildings with regard to which actions are proposed for appropriate conservation and restoration. The procedure used to generate this type of model was in two phases: spatial data capture (topographical information using a TOPCON 7005i) and processing of the spatial information (creation of the 3D model, rectification and processing of the images and virtual recreation). For the work presented in this article, a technique was sought that would make use of very inexpensive techniques, namely a conventional digital camera and a reflectorless Total Station. Obviously, the final result is not the same as if we had used laser scanner digitalization or classical photogrammetry. As indicated in this article, the aqueduct of San Lazaro in Merida and the Plaza de Santa Maria (Cathedral Square) in Caceres were mapped in 3D by means of planes, with a precision of +/- 3 cm. Hence, in addition to making photo-realistic representations, it has been possible to determine the magnitudes (linear dimensions and surface areas) of the pathologies of both monuments (cracks, collapses, damp and deterioration of stonework).
机译:在西班牙西南部的雷丝拉杜拉地区包含三个已宣布教科文组织世界遗产的地点:古城Caceres(1986年),Merida(1993)的考古合奏,以及我们瓜达卢佩圣母皇家修道院(1993)。在Extremadura大学的乔治工程和城市遗产研究小组,我们正在研究一个题为“精确立体建模,结构病理学和虚拟散步的精确三维建模,通过尊严和文化遗产的研究”的区域研究项目,其中我们在适当的保护和恢复方面建立了一些象征建筑的3D模型。用于生成这种类型模型的过程分为两个阶段:空间数据捕获(使用TOPCON 7005i的地形信息)和用于空间信息的处理(创建3D模型,纠正和图像和虚拟娱乐的处理)。对于本文提出的工作,寻求一种技术,可以利用非常便宜的技术,即传统的数码相机和反射器总站。显然,最终结果与我们使用过激光扫描仪数字化或经典摄影测量的结果不同。如本文所示,通过飞机映射到梅里达和梅迪达广场(大教堂)的San Lazaro和Plaza de Santa Maria(大教堂广场)的渡槽,精度为+/- 3厘米。因此,除了制造照片真实的表示之外,还可以确定纪念碑(裂缝,折叠,潮湿和石制劣化)的病理的大小(线性尺寸和表面区域)。

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