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首页> 外文期刊>Remote Sensing >Photogrammetric, Geometrical, and Numerical Strategies to Evaluate Initial and Current Conditions in Historical Constructions: A Test Case in the Church of San Lorenzo (Zamora, Spain)
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Photogrammetric, Geometrical, and Numerical Strategies to Evaluate Initial and Current Conditions in Historical Constructions: A Test Case in the Church of San Lorenzo (Zamora, Spain)

机译:摄影测量,几何和数值策略,用于评估历史建筑中的初始条件和当前条件:San Lorenzo教堂(西班牙萨莫拉)的一个测试案例

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Identifying and quantifying the potential causes of damages to a construction and evaluating its current stability have become an imperative task in today’s world. However, the existence of variables, unknown conditions and a complex geometry hinder such work, by hampering the numerical results that simulate its behavior. Of the mentioned variables, the following can be highlighted: (i) the lack of historical information; (ii) the mechanical properties of the material; (iii) the initial geometry and (iv) the interaction with other structures. Within the field of remote sensors, the laser scanner and photogrammetric systems have become especially valuable for construction analysis. Such sensors are capable of providing highly accurate and dense geometrical data with which to assess a building’s condition. It is also remarkable, that the latter provide valuable radiometric data with which to identify the properties of the materials, and also evaluate and monitor crack patterns. Motivated by this, the present article investigates the potential offered by the combined use of photogrammetric techniques (DIC and SfM), as well as geometrical (NURBs and Hausdorff distance) and numerical strategies (FEM) to assess the origin of the damage (through an estimation of the initial conditions) and give an evaluation of the current stability (considering the deformation and the damage).
机译:识别和量化可能损坏建筑物的潜在原因并评估其当前的稳定性已成为当今世界的当务之急。但是,变量的存在,未知的条件和复杂的几何形状阻碍了模拟其行为的数值结果,从而阻碍了此类工作。在提到的变量中,以下要强调:(i)缺乏历史信息; (ii)材料的机械性能; (iii)初始几何形状,以及(iv)与其他结构的相互作用。在远程传感器领域,激光扫描仪和摄影测量系统对于建筑分析尤其有价值。这种传感器能够提供高度准确和密集的几何数据,用以评估建筑物的状况。值得一提的是,后者提供了有价值的辐射数据,可用来识别材料的特性,并评估和监测裂纹图案。因此,本文探讨了摄影测量技术(DIC和SfM)以及几何学(NURB和Hausdorff距离)和数值策略(FEM)的结合使用所提供的潜力,以评估损害的来源(通过估计初始条件),并给出电流稳定性的评估(考虑变形和损坏)。

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