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Field test and emergency reinforcement evaluation for an ancient wood pagoda

机译:古代木塔的现场测试和紧急加固评估

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摘要

Ancient wood pagodas, as the excellent representative of ancient China, play an important role in Chinese historical, art, and scientific aspects. Because most pagodas are lacking maintenance for a long time and the long term reinforcement measure has not been determined, it is necessary to carry out an emergency reinforcement method to avoid further damage. This paper presents a design guideline of emergency reinforcement method for ancient wood pagodas. Field tests based on pulsating method were carried out to identify the dynamic characteristics, structural stiffness, and structural damages. The modal frequency, modal shape of different columns and stiffness of each story indicate that the second apparent story is the weak point of the whole structure. To effectively analyze the nonlinear performance of the second apparent story and verify the superiority of the emergency reinforcement method, three elaborated finite element models of the second apparent story in undamaged, and current and reinforced states are established. The buckling analysis shows that the emergency reinforcement method could improve the critical load 89% nearby compared with the current structure. In addition, the seismic analysis proves that the emergency reinforcement method has positive effects on strengthening the weak point to against the earthquakes.
机译:古代木塔,作为古代中国的杰出代表,在中国历史,艺术和科学方面发挥着重要作用。由于大多数宝塔长期缺乏维护,长期的加固措施尚未确定,因此有必要采取紧急加固方法以避免进一步的损坏。本文提出了古代木塔应急加固方法的设计指南。进行了基于脉动法的现场测试,以确定动力特性,结构刚度和结构损伤。模态频率,不同柱的模态形状以及每个故事的刚度表明,第二个明显的故事是整个结构的弱点。为了有效地分析第二视层的非线性性能并验证应急加固方法的优越性,建立了三个完整的第二视层在未损坏状态,当前状态和增强状态的有限元模型。屈曲分析表明,与现有结构相比,应急加固方法可以将附近的临界荷载提高89%。此外,地震分析证明,应急加固方法对于加固薄弱点以抵抗地震具有积极作用。

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