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dc.contributor.authorNakazawa, Takashien
dc.contributor.authorKatamine, Eijien
dc.contributor.authorTomoeda, Akiyasuen
dc.contributor.authorAzegami, Hideyukien
dc.contributor.alternativeナカザワ, タカシja
dc.contributor.alternativeカタミネ, エイジja
dc.contributor.alternativeトモエダ, アキヤスja
dc.contributor.alternativeアゼガミ, ヒデユキja
dc.contributor.transcriptionナカザワ, タカシja-Kana
dc.contributor.transcriptionカタミネ, エイジja-Kana
dc.contributor.transcriptionトモエダ, アキヤスja-Kana
dc.contributor.transcriptionアゼガミ, ヒデユキja-Kana
dc.date.accessioned2019-05-13T07:50:16Z-
dc.date.available2019-05-13T07:50:16Z-
dc.date.issued2015-10-
dc.identifier.issn1881-6193-
dc.identifier.urihttp://hdl.handle.net/2433/241296-
dc.description"Topology optimization theory and applications toward wide fields of natural sciences". May 7~9, 2014. edited by Takashi Nakazawa. The papers presented in this volume of RIMS Kôkyûroku Bessatsu are in final form and refereed.en
dc.description.abstractThis paper presents numerical results obtained, using a numerical method for a flow field shape optimization, for the design of a room from which people can evacuate smoothly. The domain of interest is a two-dimensional Poiseuille flow with sudden contraction in which a disk is located initially. In fact, the compressible fluid model has been used to describe the dynamics of people for the study of evacuation. However, we set a model involving the incompressible Navier-Stokes equation for the first trial. And the shape optimization to minimize the dissipation energy on the disk is demonstrated under the volume constraint. For reshaping numerically, the traction method is used. Numerical results reveal that the shape in the wake of the disk becomes an acute angle to decrease the dissipation energy monotonically, thereby satisfying the volume constraint. Such a shape has never been inferred from results of earlier studies of the evacuation problem in jamology.en
dc.format.mimetypeapplication/pdf-
dc.language.isoeng-
dc.publisherResearch Institute for Mathematical Sciences, Kyoto Universityen
dc.publisher.alternative京都大学数理解析研究所ja
dc.rights© 2015 by the Research Institute for Mathematical Sciences, Kyoto University. All rights reserved.en
dc.subjectShape optimizationen
dc.subjectNavier-Stokes equationen
dc.subject.ndc410-
dc.titleShape optimization method applied to room design based on an incompressible fluid model (Topology optimization theory and applications toward wide fields of natural sciences)en
dc.typedepartmental bulletin paper-
dc.type.niitypeDepartmental Bulletin Paper-
dc.identifier.ncidAA12196120-
dc.identifier.jtitle数理解析研究所講究録別冊ja
dc.identifier.volumeB54-
dc.identifier.spage1-
dc.identifier.epage14-
dc.textversionpublisher-
dc.sortkey01-
dc.addressMathematical Institute, Graduate School of Science, Tohoku Universityen
dc.addressDepartment of Mechanical Engineering, Gifu National College of Technologyen
dc.addressMusashino University・JST CRESTen
dc.addressGraduate School of Information Science, Nagoya Universityen
dcterms.accessRightsopen access-
dc.identifier.pissn1881-6193-
dc.identifier.jtitle-alternativeRIMS Kokyuroku Bessatsuen
出現コレクション:B54 Topology optimization theory and applications toward wide fields of natural sciences

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