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Semi-automated Creation of Accurate FE Meshes of Heritage Masonry Walls from Point Cloud Data

机译:从点云数据的半自动创建遗产砌体墙壁的精确Fe网格

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The structural analysis of buildings requires accurate spatial models. Additionally, spatial information on pathologies such as settlement-induced damage is paramount in the assessment of heritage assets. This spatial information is used as a basis for Finite Element Methods (FEM) to evaluate the stability of the structure. Traditional data acquisition approaches rely on manual measurements which are labor intensive and error prone. Therefore, major simplifications are made to document structures efficiently. The goal of this research is to provide faster and more accurate procedures to capture the spatial information required by a Finite Element (FE) mesh. This paper presents a semi-automated approach to create accurate models of complex heritage buildings for the purpose of structural analysis. By employing remote sensing techniques such as terrestrial laser scanning and photogrammetry, a complex mesh of the structure is created. Also, a methodology is proposed to capture crack infor mation. A stepwise approach is elaborated to illustrate how the spatial infor mation is adapted towards a FE mesh. The results show a significant difference between the geometry of our model and a traditional wire-frame model. Not only does accurate modelling result in deviating loads, it also affects the behavior of the object. Through the proposed approach, experts can develop highly accurate FE meshes to assess the stability of the structure up to as-built conditions and taking into account existing damage patterns.
机译:建筑物的结构分析需要准确的空间模型。此外,关于沉降诱导的损害等病理学的空间信息对于评估遗产资产是至关重要的。该空间信息用作有限元方法(FEM)以评估结构的稳定性的基础。传统的数据采集方法依赖于手动测量,这些方法是劳动密集型和易于错误的。因此,有效地对文档结构进行了重大简化。本研究的目标是提供更快,更准确的程序,以捕获有限元(FE)网格所需的空间信息。本文介绍了一种半自动方法,为结构分析创建复杂遗产建筑的准确模型。通过采用诸如地面激光扫描和摄影测量的遥感技术,创建了结构的复杂网格。此外,提出了一种方法来捕获裂缝信息。详细说明逐步方法以说明空间信息如何适应FE网格。结果显示了我们模型的几何和传统的线框模型之间的显着差异。不仅准确的建模导致偏离负载,它也会影响对象的行为。通过拟议的方法,专家可以开发高度准确的Fe网格,以评估结构的稳定性,达到竣工条件,并考虑到现有的伤害模式。

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