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Evaluation of Dynamic Behaviors and Damage Mechanism of Ancient Timber Architectures

机译:古木材架构动态行为及损伤机制的评价

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摘要

An urgent is needed on the preservation of Chinese architectural heritages, since environmental and time impacts have been abating their structural resistance capability. It is of great importance in protecting and rehabilitating the ancient architectural culture of China to study the structural characteristics of ancient Chinese timber architectures. As a typical example of ancient timber architectures-Yingxian Wooden Pagoda in west of Shanxi Prince, the dynamic characteristics and damage mechanics of the tower are investigated experimentally and numerically by micro tremor measurements and means of finite-element-method (FEM). The micro tremor measurements are conducted on the tower (each floor) and the surrounding ground. From the micro tremor observation data, the predominant frequency of the surface ground and natural frequency, vibration mode and the damage distribution characteristics of the tower were evaluated. Based on the experimental studies, the tower is created by a delicate finite element model. And in order to simulate the mortise and tenon joint-bucket arches in the structure, which is a combination of a series of timber structures, a special beam-element group is developed. Numerical simulation of the seismic response of the tower shows that the second and third floors of the tower would be damaged more seriously than other floors for their severe stresses when acted by seismic loading. The present analysis of the tower shows the same phenomena. The results provide basis for repairing and reinforcing the ancient timber tower.
机译:在保存中国建筑遗产时需要紧急,因为环境和时间的影响已经减轻了它们的结构阻力能力。保护和修复中国古代建筑结构特征的保护和修复古代建筑结构特征是非常重要的。作为山西王子西部古代木材架构的典型例子 - 山西王子以西的泰县木宝塔,通过微观震颤测量和有限元 - 方法(FEM)进行实验,数值对塔的动态特性和损坏力学。微震动测量在塔架(每个楼层)和周围地面上进行。从微型震颤观察数据,评估了塔的表面接地和自然频率,振动模式和损伤分布特性的主要频率。基于实验研究,塔由精致的有限元模型产生。为了模拟结构中的榫眼和榫龙斗拱,这是一系列木结构的组合,开发了一种特殊的光束元件组。塔的地震响应的数值模拟表明,当岩层载荷作用时,塔的第二和第三楼层比其他地板更严重地严重受损。塔的目前分析显示了相同的现象。结果为修理和加强古代木材塔提供了依据。

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