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首页> 外文期刊>Journal of structural engineering >Structural Performance of the Esfahan Shah Mosque
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Structural Performance of the Esfahan Shah Mosque

机译:埃斯法罕莎清真寺的结构表现

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Structural assessment and seismic vulnerability of ancient masonry buildings is a difficult task even when employing advanced specialized technical skills, which requires a complex study. This paper aims to assess the structural and seismic safety of the Esfahan Shah Mosque in Iran by numerically investigating the nonlinear behavior of the mosque for different scenarios and identifying if there is a correlation between crack patterns resulting from numerical analysis, inspection, and historical evidence. First, the numerical model of the mosque is developed and updated using the experimental parameters obtained from a nondestructive test (NDT) campaign that included ambient vibration and sonic testing. Second, the finite element calibrated model is used to evaluate the structural behavior of the mosque under vertical loading, including the influence of the soil and a sensitivity analysis varying the masonry material properties. Besides, the paper discusses the structural behavior of radial stiffening walls that connect the inner and outer domes of the mosque. Finally, pushover analysis was performed to assess the seismic safety of the building and the efficiency of the structural strengthening implemented in the early 20th century. The different technical observations and analyses lead to a better understanding of the double dome and the eyvan (a rectangular space, usually vaulted, walled on three sides, with one end entirely open) as the most vulnerable parts of the structure, which validates the structural strengthening of the 1930s. Yet, improving the connection between the stiffening walls and the two domes could effectively increase the global structural performance of the building. (C) 2021 American Society of Civil Engineers.
机译:古代砌体建筑的结构评估和地震脆弱性是一项艰巨的任务,即使采用先进的专业技术技能,也需要一个需要复杂的研究。本文旨在通过数值调查不同情景的清真寺的非线性行为来评估伊朗的伊斯法罕沙清真寺的结构和地震安全性,并识别是否存在由数值分析,检查和历史证据产生的裂缝模式之间存在相关性。首先,使用从包括环境振动和声波测试的非破坏性测试(NDT)运动获得的实验参数,开发和更新清真寺的数值模型。其次,有限元校准模型用于评估垂直载荷下清真寺的结构行为,包括土壤的影响和改变砌体材料特性的敏感性分析。此外,本文讨论了连接清真寺内外圆顶的径向加强壁的结构行为。最后,进行了推移分析以评估建筑物的地震安全性以及20世纪初实施的结构加强效率。不同的技术观察和分析导致更好地了解双穹顶和眼镜(矩形空间,通常拱形,三面围墙,完全打开)作为结构的最脆弱的部分,验证了结构加强20世纪30年代。然而,改善加强壁和两个圆顶之间的连接可以有效地提高建筑物的全球结构性能。 (c)2021年美国土木工程师协会。

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