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The calculated AD 365 earthquake waveform provides an indication of maximum acceleration using the stochastic Green’s function method with the selected parameters. Using this estimation, damage to masonry structures can be calculated. The ancient Crete cities of Aptra and Chania were both hit by the AD 365 earthquake. Aptera, built on out-cropping rock, would have been 80% destroyed. In comparison, Chania, in northwest Crete, would have been completely destroyed because it was built on thick sedimentary layers. The subsurface composition at Chania would have made it a high seismic intensity area. This earthquake was followed by a tsunami that devastated the southern and eastern coasts of the Mediterranean. 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  1. 防災科研関係論文

Strong Motion and Tsunami Related to the AD 365 Crete Earthquake

https://nied-repo.bosai.go.jp/records/5466
https://nied-repo.bosai.go.jp/records/5466
9ca861e5-8c96-431d-99ba-39d9c16c10cb
Item type researchmap(1)
公開日 2023-03-30
タイトル
言語 ja
タイトル Strong Motion and Tsunami Related to the AD 365 Crete Earthquake
タイトル
言語 en
タイトル Strong Motion and Tsunami Related to the AD 365 Crete Earthquake
言語
言語 eng
著者 T. Ohsumi

× T. Ohsumi

ja T. Ohsumi

en T. Ohsumi

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Y. Dohi

× Y. Dohi

ja Y. Dohi

en Y. Dohi

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H. Hazarika

× H. Hazarika

ja H. Hazarika

en H. Hazarika

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抄録
内容記述タイプ Other
内容記述 The West Asian region is a tectonically active area due to crustal deformation; the associated earthquakes occur on a large scale and have been recorded from the historical period to the present. Investigating the most suitable solution for this crustal movement will contribute to this region’s earthquake and tsunami disaster mitigation. The most reliable parameters were defined by researchers and applied with a non-uniform distribution in the fault plane based on Papadimitriou et al [1]. The calculated AD 365 earthquake waveform provides an indication of maximum acceleration using the stochastic Green’s function method with the selected parameters. Using this estimation, damage to masonry structures can be calculated. The ancient Crete cities of Aptra and Chania were both hit by the AD 365 earthquake. Aptera, built on out-cropping rock, would have been 80% destroyed. In comparison, Chania, in northwest Crete, would have been completely destroyed because it was built on thick sedimentary layers. The subsurface composition at Chania would have made it a high seismic intensity area. This earthquake was followed by a tsunami that devastated the southern and eastern coasts of the Mediterranean. Based on these results, risk mitigation from seismic and tsunami events should focus on high densely populated areas with thick sedimentary layers in the Mediterranean.
言語 ja
抄録
内容記述タイプ Other
内容記述 The West Asian region is a tectonically active area due to crustal deformation; the associated earthquakes occur on a large scale and have been recorded from the historical period to the present. Investigating the most suitable solution for this crustal movement will contribute to this region’s earthquake and tsunami disaster mitigation. The most reliable parameters were defined by researchers and applied with a non-uniform distribution in the fault plane based on Papadimitriou et al [1]. The calculated AD 365 earthquake waveform provides an indication of maximum acceleration using the stochastic Green’s function method with the selected parameters. Using this estimation, damage to masonry structures can be calculated. The ancient Crete cities of Aptra and Chania were both hit by the AD 365 earthquake. Aptera, built on out-cropping rock, would have been 80% destroyed. In comparison, Chania, in northwest Crete, would have been completely destroyed because it was built on thick sedimentary layers. The subsurface composition at Chania would have made it a high seismic intensity area. This earthquake was followed by a tsunami that devastated the southern and eastern coasts of the Mediterranean. Based on these results, risk mitigation from seismic and tsunami events should focus on high densely populated areas with thick sedimentary layers in the Mediterranean.
言語 en
書誌情報 ja : Journal of Disaster Research
en : Journal of Disaster Research

巻 13, 号 5, p. 943-956
DOI
関連識別子 10.20965/jdr.2018.p0943
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