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Evaluation of the response of a vaulted masonry structure to differential settlements using point cloud data and limit analyses

机译:使用点云数据和极限分析评估拱形砌体结构对差分结算的响应

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摘要

Differential settlements have adverse effects on the serviceability and stability of vaulted masonry structures. However, the existing monitoring and assessment techniques do not capture these effects in sufficient detail. In this paper, a new approach is proposed to better describe the influence of support movements on barrel vaults. In this approach, laser scan point clouds of a settling vaulted structure are compared. Different cloud comparison methods are used to accurately identify the displacements of small point cloud segments. In particular, a new cloud comparison method, which modifies the well-known iterative closest point (ICP) registration algorithm, is developed. By constraining ICP to ensure displacement continuity between adjoining point cloud segments, three dimensional movement estimates of the structure are obtained. These estimates delineate the settlement response by indicating the location and magnitude of cracking. This rich information is then used to identify the settlement response mechanism of the vault using limit state numerical analysis. Finally, by interpreting the numerical results with relevant serviceability criteria, a new method to quantify the influence of settlements on barrel vaulted masonry structures is proposed. This damage assessment technique is used to evaluate observed damage due to piling-induced settlements in a masonry viaduct at London Bridge Station.
机译:差分沉降对拱形砌体结构的可用性和稳定性产生不利影响。但是,现有的监测和评估技术不会以足够的细节捕获这些效果。在本文中,提出了一种新方法,以更好地描述支持运动对桶拱顶的影响。在这种方法中,比较了沉降拱形结构的激光扫描点云。使用不同的云比较方法来准确地识别小点云片段的位移。特别地,开发了一种新的云比较方法,用于修改众所周知的迭代最接近点(ICP)登记算法。通过约束ICP以确保邻接点云段之间的位移连续性,获得结构的三维运动估计。这些估计通过指示裂缝的位置和大小来描绘和解响应。然后使用该丰富的信息来识别Vault使用限制状态数值分析的拱顶响应机制。最后,通过用相关的可靠性标准解释数值结果,提出了一种量化占用桶拱形砌体结构的沉降影响的新方法。这种伤害评估技术用于评估由于伦敦桥站砌体高架桥中的打桩诱导的沉淀而被观察到的损坏。

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