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Quantifying the effect of geometric uncertainty on the structural behaviour of arches developed from direct measurement and Structure-from-Motion (SfM) photogrammetry

机译:量化几何不确定性对从直接测量和结构 - 从运动(SFM)摄影测量产生的拱形结构行为的影响

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The aim of this paper is to quantify the effect of geometric uncertainty on the structural behaviour of arches developed using traditional geospatial and remote sensing techniques. Geometric models of twenty-five dry jointed, rigid block arch specimens were developed using the proposed "Image2DEM" framework, encompassing the Structure-from-Motion (SfM) photogrammetry pipeline. Assessment of the framework was carried out with respective geometric models developed from tape measurements, in terms of geometry and structural behaviour. The geometric variables investigated were the: a) joint inclination angle; b) joint mid-point location; c) joint length; d) block volume; and e) block centroid location. Concerning structural behaviour, experimental testing of the arch specimens was numerically simulated with the Discrete Element Method (DEM), and the stiffness, load multiplier and normal forces between joints were obtained. Results showed that even small variations (approx. 8%) between geometric models developed from SfM photogrammetry and tape measurements can influence the collapse load and stiffness of the arch by more than 10% and 46% respectively. Also, of the geometric variables investigated, the joint inclination angle was found to influence the collapse load the most. These findings highlight the importance of developing accurate geometric models, and subsequent employment of accurate geometric data acquisition techniques, to reliably capture the structural behaviour of arches. Although an investigation on arch specimens constructed in the laboratory is demonstrated here, the developed outcomes have important implications for the broader topic of data-driven masonry diagnostics using SfM photogrammetry and high-level numerical modelling using micro-modelling strategies such as the DEM.
机译:本文的目的是量化几何不确定性对使用传统地理空间和遥感技术开发的拱形结构行为的影响。使用所提出的“image2dem”框架,开发了二十五个干燥连接,刚性块拱样品的几何模型,包括来自运动(SFM)摄影测量管道的结构。在几何和结构行为方面,通过从磁带测量的各个几何模型进行框架的评估。研究的几何变量是:a)联合倾斜角度; b)联合中点位置; c)联合长度; d)块卷;和e)阻止质心位置。关于结构行为,用离散元件(DEM)进行数值模拟拱样品的实验测试,并获得了刚度,负载乘数和接头之间的正常力。结果表明,从SFM摄影测量和磁带测量中开发的几何模型之间的变化(约8%)可以分别影响拱形的坍塌载荷和刚度10%和46%。而且,研究了几何变量,发现关节倾斜角度最多影响塌陷载荷。这些发现突出了开发精确的几何模型的重要性,并随后就业准确的几何数据采集技术,可靠地捕获拱形的结构行为。虽然这里展示了对实验室中构建的拱形样本的调查,但是,使用SFM摄影测量和高级数值模型,诸如使用DEM等微型模型策略的数据驱动的砌体诊断的更广泛主题具有重要意义。

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