首页> 外文期刊>International Journal of Computational Methods and Experimental Measurements >RELATIVE DISPLACEMENTS OF 3D OPTICAL MARKERS FOR DEFORMATIONS AND CRACK MONITORING OF A MASONRY STRUCTURE UNDER SHAKING TABLE TESTS
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RELATIVE DISPLACEMENTS OF 3D OPTICAL MARKERS FOR DEFORMATIONS AND CRACK MONITORING OF A MASONRY STRUCTURE UNDER SHAKING TABLE TESTS

机译:3D光学标志物的相对位移,用于振动台试验下砌体结构的变形和裂纹监测

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摘要

The application of 3D motion capture systems to shaking table testing provides a unique tool for recording relative displacements of a large number of measurement points of the tested structure. The analysis of 3D relative displacements during dynamic tests allows us to evaluate the structure deformations and to monitor the cracks formation and evolution. The present paper focuses on the processing and analysis of 3D motion capture data to extract accurate displacements between markers positioned on a full-scale model of a masonry cross vault representing a vault of the mosque of Dey, Algiers, tested at the ENEA Casaccia Research Centre. The management and processing of the data acquired through 67 markers located on the vault are described, showing the potentialities of the methodology. Moreover, the possible formulation of damage indices based on the structure deformations and cracks aperture detected from markers relative displacements (MRDs) was explored. In particular, cracks could be counted and classified as a function of the detected apertures, following damage thresholds indicated in the Italian regulations. Moreover, the failure mechanism could be easily visualized and analysed by monitoring the cumulative MRDs. In addition, in-plane and out-of-plane deformations of walls could be monitored during each seismic test, providing accurate information on the torsional and bending effects.
机译:3D运动捕获系统在振动台式测试的应用提供了一种独特的工具,用于记录测试结构的大量测量点的相对位移。动态测试期间3D相对位移的分析使我们能够评估结构变形并监测裂缝形成和进化。本文侧重于3D运动捕获数据的加工和分析,以提取位于代表Dey,Algiers Mosciers Vault的砌体横穹窿的全尺寸模型上的标记之间的准确位移,在Enea Casaccia研究中心测试。描述了由Vault上的67个标记获取的数据的管理和处理,示出了方法的潜力。此外,探讨了根据从标记相对位移(MRDS)检测到的结构变形和裂缝孔的损伤指数的可能配方。特别地,在意大利法规中所示的损伤阈值之后,可以将裂缝计数和分类为检测到的孔径。此外,通过监测累积MRD可以容易地可视化和分析故障机制。此外,可以在每个地震测试期间监测平面内和平面外变形,从而提供有关扭转和弯曲效应的准确信息。

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