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DEVELOPING AND TESTING A METHOD FOR DEFORMATIONS MEASUREMENTS OF STRUCTURES

机译:开发和测试结构的变形测量方法

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Dynamic monitoring of structures is an important task in civil engineering that aims to determine the stability and safety of a structure by using information about its deformations. This paper describes the development of a method for the determination of structures deformations. The proposed method is developed to add a new solution to traditional methods of angle intersection and trigonometric leveling. It is designed to provide a simultaneous solution to all observations in one step using least squares solution to improve the expected accuracy and to generate the necessary data for statistical analysis. A practical experiment was made, where the observations of 7 deformation points on a simply supported steel beam with concentrated load were measured using the proposed method, total station and linear variable displacement transducers (LVDTs). Deflections measured directly from LVDTs were used as a reference for assessment of the serviceability of the beam. The results show that for the maximum deflection at mid-span of the beam, the differences between the measured deflections from LVDTs and proposed method are less than 0.87 mm corresponding to an error of 4.3%, while they are less than 1.32 mm causing an error of 12.5% for the case of total station measurements. Based on root mean square error values, the accuracy of point displacements determination using the proposed method is much better than total station measurements. The proposed method is suitable for the accurate determination of horizontal and vertical displacements and provides a realistic solution for monitoring structures at both entire structure and member levels.
机译:结构的动态监测是土木工程中的重要任务,旨在通过使用有关其变形的信息来确定结构的稳定性和安全性。本文介绍了一种确定结构变形的方法的发展。开发了该方法以向传统的角度交叉和三角测量方法添加新的解决方案。它旨在在使用最小二乘溶液中在一步中提供同时解决所有观察结果,以提高预期的准确性并产生统计分析的必要数据。制备了实际实验,其中使用所提出的方法,总站和线性可变位移传感器(LVDT)测量具有集中载荷的简单负载钢束上的7个变形点的观察。直接从LVDT测量的偏转作为评估光束可维护性的参考。结果表明,对于光束中间跨度的最大偏转,来自LVDT的测量偏转和所提出的方法之间的差异小于0.87mm,对应于4.3%的误差,而它们小于1.32mm,导致错误总站测量的情况为12.5%。基于根均方误差值,使用所提出的方法确定点位移确定的精度远比全站仪测量好得多。所提出的方法适用于精确确定水平和垂直位移,并提供用于监测整个结构和成员水平的结构的实际解决方案。

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