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3D limit analysis of masonry pavilion domes on octagonal drum subjected to vertical loads

机译:八角形鼓体上竖向荷载下砌体穹顶的3D极限分析

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Within the framework of limit design applied to masonry structures, this paper aims at analyzing the different behavior of a pavilion dome according to the adopted construction and reinforcement technologies. By using the static theorem applied to the dome discretized in rigid macro-blocks of variable shape aligned along parallels and meridians, a mathematical model have been constructed in order to search for the load collapse multiplier, and thus to evaluate the degree of structural safety. Then, the associated failure mechanism is represented at the instant in which the collapse is reached. The program that implement the modeling is sufficiently versatile and, in addition to the mechanical characteristics, allows to define the intrados profile, the thickness variability, as well as to insert any window opening in the drum, the lantern at the top and the hoops at each level. The results shown here concern some numerical applications carried out on a theoretical dome, as well as those related to a first approach to the analysis of the dome of Santa Maria del Fiore in Florence by Brunelleschi.
机译:在适用于砌体结构的极限设计框架内,本文旨在根据所采用的建造和加固技术来分析亭穹顶的不同性能。通过使用静态定理,将离散化的圆顶离散成沿平行线和子午线对齐的可变形状的刚性宏块中的离散,建立了数学模型,以寻找载荷倒塌乘数,从而评估结构安全程度。然后,在达到崩溃的瞬间表示相关的故障机制。实施建模的程序具有足够的通用性,除了机械特性外,还可以定义内部轮廓,厚度可变性,以及在鼓中插入任何开窗,顶部的灯笼和箍在开口每个级别。这里显示的结果涉及在理论圆顶上进行的一些数值应用,以及与Brunelleschi在佛罗伦萨的圣玛丽亚菲奥雷圆顶的第一种分析方法有关的数值应用。

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