首页> 外文期刊>Annals Of Geophysics >Seismic Hazard Assessment for the protection of Cultural Heritage in Greece: Methodological approaches for National and Local Scale assessment (pilot areas of Aighio, Kalamata and Heraklion)
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Seismic Hazard Assessment for the protection of Cultural Heritage in Greece: Methodological approaches for National and Local Scale assessment (pilot areas of Aighio, Kalamata and Heraklion)

机译:希腊保护文化遗产的地震危险性评估:国家和地方规模评估的方法论方法(Aighio,Kalamata和伊拉克利翁的试点地区)

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The rich Greek cultural heritage has been always threatened by the intense seismic activity in the broader Aegean region. Τhe objective of the presented project is to develop an integrated tool for the engineers in order to protect the Greek monuments, museums and archaeological sites against strong earthquakes. In order to achieve this goal a GIS-based database was developed with a bidirectional purpose: to collect and combine all necessary data about the monuments and their regional geological and seismotectonic conditions and to assess seismic hazard for each and every monument using the most modern techniques. In this paper we present the structure and development of our database, we propose a methodological procedure for estimating seismic hazard in Greece which will be the basis for the structural assessment of historical structures. The preliminary results show that the estimated values of maximum ground acceleration, in several areas nearby large faults exceed those proposed by the earthquake protection code of Greece by a significant amount. Therefore an update of the protection code would be necessary. Subsequently the estimated values of maximum ground acceleration have been applied to three cases of monuments for the determination of the most vulnerable parts of the structure and the verification of the observed pathology.
机译:广阔的爱琴海地区强烈的地震活动一直威胁着希腊丰富的文化底蕴。本项目的目的是为工程师开发一种集成工具,以保护希腊古迹,博物馆和考古遗址免受强烈地震的侵害。为了实现这一目标,开发了一个基于GIS的双向数据库,该数据库具有双向用途:收集和组合有关古迹及其区域地质和地震构造条件的所有必要数据,并使用最现代的技术评估每座古迹的地震危险。在本文中,我们介绍了数据库的结构和发展,提出了一种估算希腊地震灾害的方法学程序,这将成为对历史结构进行结构评估的基础。初步结果表明,在大断层附近的几个区域中,最大地面加速度的估计值大大超过了希腊的地震保护法所提出的估计值。因此,必须更新保护代码。随后,将最大地面加速度的估计值应用于三处古迹,以确定结构中最脆弱的部分并验证观察到的病理。

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