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DYNAMIC ANALYSIS OF THE INTERACTION BETWEEN BELLS AND MASONRY STRUCTURES

机译:钟声和砌体结构相互作用的动态分析

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This research show the numerical and experimental results evaluated in the Fiesole bell tower in Italy. The aim of this investigation is to increase the knowledge related to the dynamic interaction between the vibration frequencies of the bells and the dynamic behavior of the masonry tower. In particular, in this paper the numerical evaluation focuses on the bell and tower interaction, taking into account the behavior of the tower as an exempt structure. In particular, the study was divided into several phases. The first phase consisted of the geometric definition of the structure, as well as the definition of the mechanical properties of the bells. In the second phase the dynamic properties of the structural system were evaluated and the numerical model was calibrated. In the third phase, lateral restrictions of the tower were released and a parametric study of the interaction of the dynamic forces of the bells with the tower was carried out. Based on these results, the velocity ranges, and swing amplitude of the bells, which could damage the tower, were evaluated according to DIN 4178-2005. The main results show that the biggest bell should not be used for velocity values near 41.53 rpm. regardless of the swing angle. Also, for smaller bells, swing angles between 50? and 95? and speeds between 25-40 rpm. should be avoided.
机译:该研究表明,在意大利斐耶奥尔钟楼评估的数值和实验结果。该调查的目的是提高与钟声振动频率之间的动态相互作用相关的知识以及砌体塔的动态行为。特别是,在本文中,数值评估侧重于钟声和塔互动,考虑到塔作为豁免结构的行为。特别是,该研究分为几个阶段。第一阶段由结构的几何定义组成,以及钟声的机械性能的定义。在第二阶段中,评估结构系统的动态特性,并校准了数值模型。在第三阶段,释放塔的横向限制,并进行参数研究与塔的钟声的动态力的相互作用。基于这些结果,根据DIN 4178-2005评估可能损坏塔架的速度范围和钟声的摆动幅度。主要结果表明,最大的钟头不应用于41.53 rpm附近的速度值。无论摆动角度如何。此外,对于较小的钟声,在50之间的摆动角度?和95?和25-40 rpm之间的速度。应该避免。

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