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Mitigating Seismic Risks in Historical Masonry: An Example Project

机译:在历史砌体中减轻地震风险:一个示例项目

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Protection of cultural heritage buildings against strong seismic events is one of the most challenging tasks modern engineers are called to tackle. Masonry structures are complex with regional and historical diversities rendering extremely difficult defining generalized rules. A holistic approach that involves interdisciplinary collaboration and a full package of engineering from monitoring to testing is a necessity. The sources for assessment, strengthening, and preservation are not enough for the entire inventory of heritage buildings, thus there always exists need for conducting risk studies to estimate the seismic risk these structures are exposed to. The main ingredient of seismic risk studies is the definition of the structural limit states, which is one of the most challenging topics since the historical structures rarely possess similarities among them while their response is characterized by complex interaction of structural components. This paper presents a scientific project funded to contribute to the mitigation of seismic risk in the historical peninsula of Istanbul where Eastern Rome, Byzantine, and Ottoman structures populate almost every street. A complete approach has been followed in the project, the main activities of which consist of creating a wide strong ground motion and ambient vibration network, building and testing large-scale specimens to define limit states of the masonry heritage structures and combining the monitoring an testing findings with analytical modelling tools. The project resulted in a Master Plan in which steps to be taken to protect the existing heritage buildings in the historical peninsula of Istanbul is proposed and discussed.
机译:保护文化遗产对强烈地震事件的保护是现代工程师最具挑战性的任务之一。砌体结构与区域和历史多样性复杂,呈现极其困难的定义规则。一种涉及跨学科合作的整体方法以及从监测到测试的全套工程是必要的。评估,加强和保存的来源对于整个遗产建筑物库存不足,因此总需要进行风险研究以估计这些结构暴露的地震风险。地震风险研究的主要成分是结构极限状态的定义,这是最具挑战性主题之一,因为历史结构很少具有它们之间的相似性,而其响应的特征在于结构部件的复杂相互作用。本文介绍了一个科学项目,为伊斯坦布尔历史半岛的历史半岛造成抗震风险的资助,在那里罗马东部,拜占庭和奥斯曼结构几乎填充了几乎每条街道。该项目遵循了一种完整的方法,其中主要活动包括创建宽强的地面运动和环境振动网络,建筑和测试大型试样,以定义砌体遗产结构的极限状态,并结合监控测试用分析建模工具调查结果。该项目促成了一项主计划,其中提出并讨论了历史上半岛保护现有的遗产建筑的步骤。

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