An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated

The paper proposes a method to enable analyzing any large deformation of membrane structures. If the analysis uses even very small rigidity against compression in the structures, the computation becomes multi-bifurcated problem and unstable. The original compression-free model used in the method kee...

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Main Authors: Yamada Shohei, Ijima Katsushi, Obiya Hiroyuki, Zakaria Muhammad Nizam
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20164702016
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spelling doaj-233d033cae2a47efbea569e9531bde6a2021-02-02T00:32:45ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01470201610.1051/matecconf/20164702016matecconf_iconcees2016_02016An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome InflatedYamada Shohei0Ijima Katsushi1Obiya Hiroyuki2Zakaria Muhammad Nizam3Department of Civil Engineering and Architecture, Graduate School of Science and Engineering, Saga UniversityDepartment of Civil Engineering and Architecture, Graduate School of Science and Engineering, Saga UniversityDepartment of Civil Engineering and Architecture, Graduate School of Science and Engineering, Saga UniversityDepartment of Structural and Material Engineering, Faculty of Civil and Environmental Engineering, University Tun Hussein Onn MalaysiaThe paper proposes a method to enable analyzing any large deformation of membrane structures. If the analysis uses even very small rigidity against compression in the structures, the computation becomes multi-bifurcated problem and unstable. The original compression-free model used in the method keeps the structures in tension field and this makes computing the deformation always very stable. The paper uses the advantage of the method and shows a snapping phenomenon during constructing a membrane dome. Though the snapping phenomenon is not so public, the phenomenon occasionally happens in the construction site and it causes the destruction.http://dx.doi.org/10.1051/matecconf/20164702016
collection DOAJ
language English
format Article
sources DOAJ
author Yamada Shohei
Ijima Katsushi
Obiya Hiroyuki
Zakaria Muhammad Nizam
spellingShingle Yamada Shohei
Ijima Katsushi
Obiya Hiroyuki
Zakaria Muhammad Nizam
An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
MATEC Web of Conferences
author_facet Yamada Shohei
Ijima Katsushi
Obiya Hiroyuki
Zakaria Muhammad Nizam
author_sort Yamada Shohei
title An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
title_short An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
title_full An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
title_fullStr An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
title_full_unstemmed An Orthotropic Membrane Model for the Large Deformation Analysis and Snapping Phenomena of the Dome Inflated
title_sort orthotropic membrane model for the large deformation analysis and snapping phenomena of the dome inflated
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description The paper proposes a method to enable analyzing any large deformation of membrane structures. If the analysis uses even very small rigidity against compression in the structures, the computation becomes multi-bifurcated problem and unstable. The original compression-free model used in the method keeps the structures in tension field and this makes computing the deformation always very stable. The paper uses the advantage of the method and shows a snapping phenomenon during constructing a membrane dome. Though the snapping phenomenon is not so public, the phenomenon occasionally happens in the construction site and it causes the destruction.
url http://dx.doi.org/10.1051/matecconf/20164702016
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