利用震后点云数据对砌体结构的破坏进行法医学评估

IF 4.1 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
Yilong Yang, Elif Durgut, Medine Ispir, Bora Pulatsu, Sinan Acikgoz
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引用次数: 0

摘要

地震后工程结构勘察的目的是收集工程结构失效的法医学调查所需的基本数据。这些调查为地震后的紧急修复、稳定和拆除决策提供了信息。目前的侦察程序依赖于目视观察和人工测量,这不能为历史砌体结构的法医分析提供足够的数据。这项研究展示了另一种形式的数据,激光扫描和摄影测量的点云,可以用来进行详细的法医工作。2023年土耳其地震的案例研究用于说明如何使用点云来1)量化承重系统的几何形状,2)评估建筑质量,3)检测几何变形和缺陷,以及4)提供数据以生成和评估数值模型。这些例子突出了这种替代数据形式提供的新见解。作为本研究的一部分收集的数据集是开放共享的,以便进一步调查:https://github.com/Yilong-Yang/Shared-Data---BEE-2025。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of post-earthquake point cloud data for forensic evaluation of failures in masonry structures

Post-earthquake reconnaissance of engineering structures aims to collect the essential data required for forensic investigations of failures. These investigations inform time-critical repair, stabilisation and demolition decisions after an earthquake. Current reconnaissance procedures rely on visual observations and manual surveying, which do not provide adequate data for the forensic analysis of historic masonry structures. This study shows how an alternative form of data, point clouds from laser scanning and photogrammetry, can be used to conduct detailed forensic work. Case studies from the 2023 Turkey earthquakes are used to illustrate how point clouds were employed to 1) quantify the geometry of load-bearing systems, 2) assess construction quality, 3) detect geometric distortions and defects, and 4) provide data to generate and evaluate numerical models. The examples highlight the new insight provided by this alternative form of data. The dataset collected as a part of this study is shared open access to enable further investigations: https://github.com/Yilong-Yang/Shared-Data---BEE-2025.

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来源期刊
Bulletin of Earthquake Engineering
Bulletin of Earthquake Engineering 工程技术-地球科学综合
CiteScore
8.90
自引率
19.60%
发文量
263
审稿时长
7.5 months
期刊介绍: Bulletin of Earthquake Engineering presents original, peer-reviewed papers on research related to the broad spectrum of earthquake engineering. The journal offers a forum for presentation and discussion of such matters as European damaging earthquakes, new developments in earthquake regulations, and national policies applied after major seismic events, including strengthening of existing buildings. Coverage includes seismic hazard studies and methods for mitigation of risk; earthquake source mechanism and strong motion characterization and their use for engineering applications; geological and geotechnical site conditions under earthquake excitations; cyclic behavior of soils; analysis and design of earth structures and foundations under seismic conditions; zonation and microzonation methodologies; earthquake scenarios and vulnerability assessments; earthquake codes and improvements, and much more. This is the Official Publication of the European Association for Earthquake Engineering.
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