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An innovative methodology for the non-destructive diagnosis of architectural elements of ancient historical buildings

机译:一种用于对历史建筑进行无损诊断的创新方法

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摘要

In the following we present a new non-invasive methodology aimed at the diagnosis of stone building materials used in historical buildings and architectural elements. This methodology consists of the integrated sequential application of in situ proximal sensing methodologies such as the 3D Terrestrial Laser Scanner for the 3D modelling of investigated objects together with laboratory and in situ non-invasive multi-techniques acoustic data, preceded by an accurate petrographical study of the investigated stone materials by optical and scanning electron microscopy. The increasing necessity to integrate different types of techniques in the safeguard of the Cultural Heritage is the result of the following two interdependent factors: 1) The diagnostic process on the building stone materials of monuments is increasingly focused on difficult targets in critical situations. In these cases, the diagnosis using only one type of non-invasive technique may not be sufficient to investigate the conservation status of the stone materials of the superficial and inner parts of the studied structures 2) Recent technological and scientific developments in the field of non-invasive diagnostic techniques for different types of materials favors and supports the acquisition, processing and interpretation of huge multidisciplinary datasets.
机译:在下文中,我们提出了一种新的非侵入性方法,旨在诊断历史建筑和建筑元素中使用的石材建筑材料。这种方法包括原位近端传感方法(例如3D地面激光扫描仪)的集成顺序应用,用于对被调查对象进行3D建模,以及实验室和原位非侵入性多种技术的声学数据,然后进行精确的岩石学研究。通过光学和扫描电子显微镜对石材进行了研究。由于以下两个相互依存的因素,越来越需要将各种类型的技术集成到文化遗产保护中:1)对纪念碑的建筑石材的诊断过程越来越关注于关键情况下的困难目标。在这些情况下,仅使用一种非侵入性技术进行诊断可能不足以调查所研究结构的表层和内部的石材保护状况2)非结构化领域的最新技术和科学进展-用于不同类型材料的侵入式诊断技术有利于并支持巨大的多学科数据集的获取,处理和解释。

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