Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft

The main purpose of this paper is to evaluate the structural response of composite steel-concrete eccentrically buckling-restrained braced frames (BRBFs). The finite element (FE) software ABAQUS is employed to nonlinearly analyse the BRBFs. Comparing the modelling and experimental test results valid...

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Main Authors: Pronina Polina F., Sun Ying, Tushavina Olga V.
Format: Article
Language:English
Published: Institut za istrazivanja i projektovanja u privredi 2020-01-01
Series:Istrazivanja i projektovanja za privredu
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2020/1451-41172004693P.pdf
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spelling doaj-8c32b3bea2204e95a88a6cbbc974249b2021-04-02T20:50:52ZengInstitut za istrazivanja i projektovanja u privrediIstrazivanja i projektovanja za privredu1451-41171821-31972020-01-011846936981451-41172004693PMathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraftPronina Polina F.0Sun Ying1Tushavina Olga V.2Moscow Aviation Institute (National Research University), Department of Managing Exploitation of Space-Rocket Systems, Moscow, Russian FederationHangzhou Xiaoshan Technician College, Department of Mechanical Engineering, Hangzhou, People's Republic of ChinaMoscow Aviation Institute (National Research University), Department of Managing Exploitation of Space-Rocket Systems, Moscow, Russian FederationThe main purpose of this paper is to evaluate the structural response of composite steel-concrete eccentrically buckling-restrained braced frames (BRBFs). The finite element (FE) software ABAQUS is employed to nonlinearly analyse the BRBFs. Comparing the modelling and experimental test results validates the FE modelling method of the BRBF. Three different strong earthquake records of Tabas, Northridge, and Chi-Chi are selected for the nonlinear dynamic analyses. A BRBF is then designed having a shear link. Afterwards, the designed BRBF is analysed under the selected earthquake records using the validated modelling method. The lateral displacements, base shears, and energy dissipations of the frame and shear link rotations are achieved from the analyses of the BRBF. The results are compared and discussed. The obtained BRBF results are also compared with their corresponding steel eccentrically braced frame (EBF) results. It is concluded that the BRBF can generally accomplish the improved structural response compared with the EBF under the earthquake records. Meanwhile, the BRBF has larger base shear capacity than the EBF. Moreover, the BRBF dissipates more energy than the EBF.https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2020/1451-41172004693P.pdfbuckling-restrained braced framecompositeconcretesteellateral displacementbase shearenergy dissipationdynamic analysis
collection DOAJ
language English
format Article
sources DOAJ
author Pronina Polina F.
Sun Ying
Tushavina Olga V.
spellingShingle Pronina Polina F.
Sun Ying
Tushavina Olga V.
Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
Istrazivanja i projektovanja za privredu
buckling-restrained braced frame
composite
concrete
steel
lateral displacement
base shear
energy dissipation
dynamic analysis
author_facet Pronina Polina F.
Sun Ying
Tushavina Olga V.
author_sort Pronina Polina F.
title Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
title_short Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
title_full Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
title_fullStr Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
title_full_unstemmed Mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
title_sort mathematical modelling of high-intensity heat flux on the elements of heat-shielding composite materials of a spacecraft
publisher Institut za istrazivanja i projektovanja u privredi
series Istrazivanja i projektovanja za privredu
issn 1451-4117
1821-3197
publishDate 2020-01-01
description The main purpose of this paper is to evaluate the structural response of composite steel-concrete eccentrically buckling-restrained braced frames (BRBFs). The finite element (FE) software ABAQUS is employed to nonlinearly analyse the BRBFs. Comparing the modelling and experimental test results validates the FE modelling method of the BRBF. Three different strong earthquake records of Tabas, Northridge, and Chi-Chi are selected for the nonlinear dynamic analyses. A BRBF is then designed having a shear link. Afterwards, the designed BRBF is analysed under the selected earthquake records using the validated modelling method. The lateral displacements, base shears, and energy dissipations of the frame and shear link rotations are achieved from the analyses of the BRBF. The results are compared and discussed. The obtained BRBF results are also compared with their corresponding steel eccentrically braced frame (EBF) results. It is concluded that the BRBF can generally accomplish the improved structural response compared with the EBF under the earthquake records. Meanwhile, the BRBF has larger base shear capacity than the EBF. Moreover, the BRBF dissipates more energy than the EBF.
topic buckling-restrained braced frame
composite
concrete
steel
lateral displacement
base shear
energy dissipation
dynamic analysis
url https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2020/1451-41172004693P.pdf
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AT sunying mathematicalmodellingofhighintensityheatfluxontheelementsofheatshieldingcompositematerialsofaspacecraft
AT tushavinaolgav mathematicalmodellingofhighintensityheatfluxontheelementsofheatshieldingcompositematerialsofaspacecraft
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