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Seismic Damage Evaluation Model of Chinese Ancient Timber Buildings

机译:中国古代木结构建筑震害评估模型

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摘要

Lack of the evaluation method for timber structure has been developed as a critical problem in decades to protect the ancient timber building. Therefore, it is essential to conduct an intensive study on the failure mechanism of the ancient timber building in order to precisely predict the structural failure prior to earthquake and evaluate the seismic damage and structure maintenance after the earthquake. Based on the test of dovetail column-frame and bracket sets under low reversed cyclic loading and the shaking table test of overall structure, the "potential of destruction-resistance" of the two energy-consuming components under low reversed cyclic loading and the energy dissipated of each energy-consuming component under various earthquake conditions were investigated. A seismic damage evaluation model of the energy-consuming components/structure based on the "potential of failure-resistance" and the energy dissipation was developed. With the failure coefficient, the damage level of each energy-consuming component and the overall structure can be evaluated respectively. Finally, the seismic damage evaluation model is validated by the experiment result.
机译:几十年来,缺乏保护木结构的评估方法已成为保护古木建筑的关键问题。因此,有必要对古木建筑的破坏机理进行深入研究,以准确预测地震前的结构破坏,并评估地震后的地震破坏和结构维护。根据低反向循环载荷下的燕尾柱形框架和支架组的测试以及整体结构的振动台试验,在低反向循环载荷下两个耗能组件的“抗破坏潜力”和能量耗散研究了在各种地震条件下每个能量消耗成分的变化。建立了基于“抗破坏潜力”和能量耗散的耗能部件/结构的震害评估模型。利用失效系数,可以分别评估每个耗能部件和整个结构的损坏程度。最后,通过实验结果验证了震害评估模型。

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