Vibration Serviceability and Environmental Impact of Steel-Concrete Composite Floors Featuring Openings and Partitions

Author:

Goncalves Marcio S.1ORCID,Pavic Aleksandar2ORCID

Affiliation:

1. Postdoctoral Researcher, Dept. of Civil and Environmental Engineering, Federal Univ. of Paraíba, João Pessoa, PB 58051-900, Brazil (corresponding author). ORCID: .

2. Professor of Vibration Engineering, Dept. of Engineering, Univ. of Exeter, Kay Bldg., Exeter EX4 4QF, UK; Professor, Faculty of Civil Engineering Management, Univ. “Union–Nikola Tesla,” Belgrade, Serbia; Director, Full Scale Dynamics Ltd., The Innovation Centre, 217 Portobello, Sheffield S1 4DP, UK; Director, FSD Active Ltd., Colyton Business Park, 5a, Wheelers Yard, Colyton EX24 6DT, UK. ORCID: .

Publisher

American Society of Civil Engineers (ASCE)

Reference26 articles.

1. AECOM, BCSA, and Steel for Life (British Constructional Steelwork Association; Architecture, Engineering, Construction, Operations, and Management). 2021. Vol. 17 of Costing steelwork # 17: Market and cost models update. London: Office for National Statistics.

2. ANSYS Inc. 2016. Documentation for Ansys release 17.1. Canonsburg, PA: ANSYS Inc.

3. BCSA (British Constructional Steelwork Association). 2016. “Steel construction: Floor vibrations.” In Steel for life, 1–20. London: BCSA.

4. Cantieni R. and T. Biro. 2005. “Office floor vibrations: Modal parameter identification and vibration monitoring.” In Proc. 6th European Conf. on Structural Dynamics 533–538. Paris: Millpress.

5. Davidson, B., and G. Owens. 2003. Steel designers’ manual. Oxford, UK: Wiley-Blackwell Publishing.

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