Seismic analysis of tunnel-form reinforced concrete structures subjected to low-intensity earthquake actions
Mohammed Kareem, Kamaran
Saleh Ahmmad, Bakhtyar
Horváth, Richárd
Lukács, Judit
Stadler, Róbert Gábor
Varga, Viktória Annamária
2026-06-29T07:55:07Z
2026-06-29T07:55:07Z
2024
http://hdl.handle.net/20.500.14044/39275
Multi-story reinforced concrete tunnel form buildings are one of the common structural types in
regions prone to high seismic risk due to the inherent earthquake resistance of the buildings and
ease of construction. Despite their good performance during earthquakes and the abundance of
such structures scattered worldwide, current seismic codes and design provisions provide
insufficient guidelines for their seismic design. As a compensatory measure, a series of modal
and nonlinear dynamic analyses are conducted by emphasizing the characteristic dynamic
behavior of tunnel-form buildings under low-intensity seismic actions. This research performs a
detailed 3-D finite element analysis on a 16-story tunnel-form reinforced concrete structure using
the advanced FE program ABAQUS CAE. Internal seismic damage in the critical region was
presented.
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Seismic analysis of tunnel-form reinforced concrete structures subjected to low-intensity earthquake actions
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Open access
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Óbudai Egyetem
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2024. November 14.
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Budapest
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Bánki Donát Gépész és Biztonságtechnikai Mérnöki Kar
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Óbudai Egyetem
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Műszaki tudományok - építőmérnöki tudományok
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tunnel-form
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low intensity seismic
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abaqus
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non-linear analysis
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Konferenciaközlemény
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Mérnöki Szimpózium a Bánkin (Proceeding of the Engineering Symposium at Bánki)