首页> 外文期刊>Archaeometry >DEFORMATION OF ANCIENT BUILDINGS INFERRED BY TERRESTRIAL LASER SCANNING METHODOLOGY: THE CANTALOVO CHURCH CASE STUDY (NORTHERN ITALY)
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DEFORMATION OF ANCIENT BUILDINGS INFERRED BY TERRESTRIAL LASER SCANNING METHODOLOGY: THE CANTALOVO CHURCH CASE STUDY (NORTHERN ITALY)

机译:陆地激光扫描方法推断出的古建筑变形:CANTALVO教堂案例研究(意大利北部)

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摘要

The study of the health of a building connects humanistic and scientific research, and a complete characterization can be achieved by integrating all the available historical documentation, architectural and metrological studies, as well as laboratory and in situ analyses of the materials. A contactless, non-invasive surveying technique such as terrestrial laser scanning (TLS) allows the acquisition of dense and accurate geometric and radiometric (electromagnetic measurements such as signal intensity) information about the observed surface of the building, which can be easily integrated with data provided by high-resolution digital imaging. The early Christian Cantalovo church was surveyed for the first time in April 2011, by means of the ILRIS-3D ER very long range scanner. The second and last survey was performed in June 2012, after the main shocks of the Emilia earthquake seismic sequence. A very long range instrument is suitable for fast, simple and independent measurements, due to its technical characteristics and, for this reason, is easily usable for accurate surveying in emergency conditions. The main results are obtained by applying a data analysis strategy based on the creation of TLS-based morphological maps computed as point-to-primitive differences, which allow the creation of a deformation map and its evolution in time.
机译:建筑物健康的研究将人文科学与科学研究联系在一起,并且可以通过整合所有可用的历史文献,建筑和计量研究以及材料的实验室和原位分析来获得完整的特征。诸如地面激光扫描(TLS)之类的非接触式非侵入式测量技术,可以获取有关建筑物被观察表面的密集且准确的几何和辐射(电磁测量,例如信号强度)信息,可以轻松地将其与数据集成由高分辨率数字成像提供。早期的基督教坎塔洛沃教堂于2011年4月使用ILRIS-3D ER超远程扫描仪进行了首次调查。在艾米利亚地震序列的主要地震之后,第二次也是最后一次调查是在2012年6月进行的。由于其技术特性,超长距离仪器适用于快速,简单和独立的测量,因此,在紧急情况下可轻松用于精确测量。通过基于基于TLS的形态图的创建并应用数据分析策略来获得主要结果,该形态图被计算为点到原始差异,这允许创建变形图及其随时间的演化。

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