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Validating Computational Models from Laser Scanning Data for Historic Facades

机译:从历史立面的激光扫描数据验证计算模型

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Increasingly, remote sensing is being used as the basis for computational models. With new approaches rapidly emerging, questions arise as to how to validate and assess the resulting models, as they tend to include at least some level of geometric inexactitude. This paper proposes a set of parameters and procedures for evaluating the usefulness of computational models for structural analysis of historic facades subjected to adjacent construction work. To test the usability of such an approach, three brick buildings were scanned with a terrestrial laser scanner. The data were processed with a recently proposed set of algorithms, and the reliability of the resulting solid models was evaluated by comparing finite-element results from auto-generated solid models versus those based on measured drawings. The proposed validation process considers overall response, as well as local behavior. The results show the importance of using both conventional values and project specific parameters.
机译:越来越多的遥感技术被用作计算模型的基础。随着新方法的迅速出现,如何验证和评估所得到的模型的问题浮出水面,因为它们往往至少包括一定程度的几何不精确性。本文提出了一组参数和程序,用于评估计算模型对进行相邻施工的历史性外墙结构分析的有用性。为了测试这种方法的可用性,使用地面激光扫描仪扫描了三座砖砌建筑物。使用最近提出的一组算法对数据进行处理,并通过比较自动生成的实体模型的有限元结果与基于实测图纸的有限元结果来评估所得实体模型的可靠性。建议的验证过程考虑了整体响应以及本地行为。结果显示了同时使用常规值和项目特定参数的重要性。

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