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Detection and prediction of seismic damage to a high-strength concrete moment resisting frame structure

机译:高强度混凝土抗弯框架结构地震损伤的检测与预测

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This paper describes a unique research program on the behavior, damage prediction and detection of a full-size, two-storey, high-performance concrete building subjected to a series of earthquake excitations. Repeated pseudo-dynamic tests were carried out on the structure during which increasing seismic forces were applied, with resulting greater levels of permanent damage to the structure. In order to monitor the level of damage, forced-vibration tests were carried out after each pseudo-dynamic test and were used to track changes in the building's key dynamic properties. This combination of tests is applied for the first time on a full-size, high-strength concrete frame structure with recent seismic detailing. The paper presents the design of the test structure, the series of forced vibration and pseudo-dynamic tests, and the evaluation of building damage. To validate the procedure, identified stiffness reductions are related to quantities measured during pseudo-dynamic tests and to observed damage. A novel model updating procedure, including regularization, is applied to the structure and is shown to accurately predict the location of the increasing damage in the building. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文描述了一个独特的研究程序,该程序针对遭受一系列地震激发的全尺寸两层高性能混凝土建筑物的行为,损伤预测和检测。对结构施加了不断增加的地震力,并对其进行了反复的拟动力试验,从而对结构造成了更大程度的永久损坏。为了监控损坏程度,在每次伪动态测试之后都进行了强制振动测试,并用于跟踪建筑物关键动态特性的变化。这种测试组合是首次在具有最新抗震细节的全尺寸,高强度混凝土框架结构上应用。本文介绍了测试结构的设计,一系列强制振动和拟动力测试以及建筑物破坏的评估。为了验证该程序,确定的刚度降低与拟动力试验期间测得的量以及观察到的损坏有关。一种新颖的模型更新过程(包括正则化)被应用到结构中,并显示为可以准确预测建筑物中不断增加的损坏的位置。 (C)2016 Elsevier Ltd.保留所有权利。

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