Damage propagation and failure mechanism of single dome historical Masonry Mosque after February 6, 2023, Kahramanmaraş earthquake doublets (Mw = 7.7 and Mw = 7.6)

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL
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Abstract

Many historical masonry mosques and minarets, including Milky Minaret Mosque and Ulu Mosque, which are very close to Ak Minaret Mosque in Malatya, suffered severe damage and collapsed after the Kahramanmaraş earthquake on February 6, 2023. Despite the settled loose soil properties and the presence of a small stream flow near the mosque, Ak Minaret Mosque, a historical masonry mosque with a single dome and square, remains operational even after the aforementioned earthquakes. Additionally, DEMA's strong ground motion station was out of service during both earthquakes. This situation raises questions about the mosque's ability to withstand the seismic load. The basic purpose of this paper is to investigate in detail the seismic performance, damage limits, the reason for unexpectedly less damage due to the earthquakes, the potential failure mode, and possible resisted earthquake loads of the historical Ak Minaret Mosque in Malatya, Türkiye. To achieve this goal, first, dynamic identification was performed on the mosque one year prior to the aforementioned earthquakes. Next, the material properties were determined using both non-destructive and destructive testing methods. Following the dynamic identification, a numerical model was generated by 3-D solid elements, and this 3-D model was calibrated using the dynamic identification tests. The mosque underwent both nonlinear static and nonlinear dynamic analyses. Nine seismic records were selected for the nonlinear dynamic analysis. Five of them were national, including even Kahramanmaraş earthquake records, and three of them were selected from an international database on the basis of fault characteristics and site classification. The analysis results indicate that Ak Minaret Mosque incurred less damage than expected during the Kahramanmaraş earthquakes. This could be due to soil improvement prior to the construction of Ak Minaret Mosque in 1573. Moreover, the effective restoration increased stiffness and maintained the mosque’s stability. Finally, the possible resisted PGA by the mosque was around 0.22 g.

在 2023 年 2 月 6 日的卡赫拉曼马拉什(Kahramanmaraş)地震后,许多历史悠久的砖石清真寺和尖塔,包括与马拉蒂亚的阿克尖塔清真寺非常接近的银河尖塔清真寺和乌卢清真寺,都遭受了严重破坏并倒塌。尽管清真寺附近的土壤已沉降松散,并有小溪流过,但 Ak Minaret 清真寺这座历史悠久的砖石结构清真寺,即使在上述地震后仍能正常使用。此外,在两次地震中,DEMA 的强地动仪站都停止了服务。这种情况使人们对清真寺承受地震荷载的能力产生了疑问。本文的基本目的是详细研究图尔基耶马拉蒂亚历史悠久的阿克尖塔清真寺的抗震性能、破坏极限、地震造成意外较小破坏的原因、潜在破坏模式以及可能的抗震荷载。为实现这一目标,首先在上述地震发生前一年对清真寺进行了动态鉴定。接着,使用非破坏性和破坏性测试方法确定了材料属性。动态鉴定之后,通过三维实体元件生成了一个数值模型,并利用动态鉴定测试对该三维模型进行了校准。对清真寺进行了非线性静态和非线性动态分析。非线性动态分析选择了九次地震记录。其中五次是国内地震记录,包括卡赫拉曼马拉什地震记录,另外三次是根据断层特征和遗址分类从国际数据库中选取的。分析结果表明,阿克尖塔清真寺在卡赫拉曼马拉什地震中遭受的破坏比预期的要小。这可能是由于在 1573 年修建阿克尖塔清真寺之前对土壤进行了改良。此外,有效的修复增加了刚度,保持了清真寺的稳定性。最后,清真寺可能抵抗的 PGA 约为 0.22 g。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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