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Shaking table test on a novel mega-frame suspended structural system
Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast University, 211189, Nanjing, China.
Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast University, 211189, Nanjing, China.
Luleå University of Technology, Department of Civil, Environmental and Natural Resources Engineering, Structural and Fire Engineering. Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast University, 211189, Nanjing, China; National Engineering Research Center for Prestressing Technology, Southeast University, 211189, Nanjing, China.ORCID iD: 0000-0002-8372-1967
Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast University, 211189, Nanjing, China; National Engineering Research Center for Prestressing Technology, Southeast University, 211189, Nanjing, China.
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2022 (English)In: Journal of Building Engineering, E-ISSN 2352-7102, Vol. 52, article id 104440Article in journal (Refereed) Published
Abstract [en]

This paper designed a 1/20 scaled two-segment 19-story mega-frame suspended structure. The seismic behaviors of the structure equipped with viscous dampers (named damping suspended structure, DSS) or rigid connecting rods (named normal suspended structure, NSS) were studied and evaluated by a series of shaking table tests, where three seismic ground motions with two intensities were selected as input motions. Both acceleration and displacement responses of the primary and suspended structures were recorded. The results revealed that the mega-frame suspended system showed good seismic behaviors and viscous dampers could effectively improve its energy dissipation capacities. For DSS, the maximal acceleration and displacement reduction of suspended structures were 75.4% and 39.8% while those of the primary structure were 29.4% and 35.3% respectively. White noise tests showed all models were at the elastic stage under all cases. Evident relative displacements between the primary and subordinate structures were observed for DSS, in this case, the suspended floors were considered as the additional mass of the primary structure and the energy could be dissipated by the swing of suspended floors. The energy dissipation mechanism of DSS was theoretically analyzed while the effect of connection forms on vibration reduction was discussed.

Place, publisher, year, edition, pages
Elsevier, 2022. Vol. 52, article id 104440
Keywords [en]
Shaking table test, Mega-frame suspended structural system, Mass isolation, Scaled model, Viscous dampers
National Category
Applied Mechanics
Research subject
Structural Engineering
Identifiers
URN: urn:nbn:se:ltu:diva-90049DOI: 10.1016/j.jobe.2022.104440ISI: 000807511900003Scopus ID: 2-s2.0-85127357577OAI: oai:DiVA.org:ltu-90049DiVA, id: diva2:1648975
Note

Validerad;2022;Nivå 2;2022-04-13 (joosat);

Funder: National Natural Science Foundation of China (51378104)

Available from: 2022-04-01 Created: 2022-04-01 Last updated: 2023-05-08Bibliographically approved

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Tu, YongmingSas, GabrielElfgren, Lennart

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