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A LiDAR Point Cloud Data-Based Method for Evaluating Strain on a Curved Steel Plate Subjected to Lateral Pressure

机译:基于LiDAR点云数据的弯曲钢板在侧向压力作用下的应变评估方法

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摘要

Structural health monitoring (SHM) and safety assessment are very important areas for evaluating the behavior of structures. Various wired and wireless sensors can measure the physical responses of structures, such as displacement or strain. One recently developed wireless technique is a light imaging detection and ranging (LiDAR) system that can remotely acquire three-dimensional (3D) high-precision coordinate information using 3D laser scanning. LiDAR systems have been previously used in geographic information systems (GIS) to collect information on geography and terrain. Recently, however, LiDAR is used in the SHM field to analyze structural behavior, as it can remotely detect the surface and deformation shape of structures without the need for attached sensors. This study demonstrates a strain evaluation method using a LiDAR system in order to analyze the behavior of steel structures. To evaluate the strains of structures from the initial and deformed shape, a combination of distributed 3D point cloud data and finite element methods (FEM) was used. The distributed 3D point cloud data were reconstructed into a 3D mesh model, and strains were calculated using the FEM. By using the proposed method, the strain could be calculated at any point on a structure for SHM and safety assessment during construction.
机译:结构健康监测(SHM)和安全评估是评估结构行为的非常重要的领域。各种有线和无线传感器可以测量结构的物理响应,例如位移或应变。一种最新开发的无线技术是光成像检测和测距(LiDAR)系统,该系统可以使用3D激光扫描远程获取三维(3D)高精度坐标信息。 LiDAR系统先前已在地理信息系统(GIS)中使用,以收集有关地理和地形的信息。但是,最近,LiDAR在SHM领域中用于分析结构行为,因为它可以远程检测结构的表面和变形形状,而无需安装传感器。这项研究演示了使用LiDAR系统的应变评估方法,以分析钢结构的行为。为了从初始形状和变形形状评估结构的应变,结合使用了分布式3D点云数据和有限元方法(FEM)。将分布的3D点云数据重建为3D网格模型,并使用FEM计算应变。通过使用所提出的方法,可以在结构上的任何点计算应变,以便在施工期间进行SHM和安全评估。

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