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Article type: Research Article
Authors: Racic, Vitomir | Pavic, Aleksandar | Brownjohn, James Mark William
Affiliations: Department of Civil and Structural Engineering, University of Sheffield, Sheffield, UK
Note: [] Corresponding author: Vitomir Racic, Lecturer in Structural Engineering, Department of Civil and Structural Engineering, University of Sheffield, Sir Frederick Mappin Building, Sheffield S1 3JD, UK. Tel.: +44 (0) 114 222 5727; Fax: +44 (0) 114 222 5700; E-mail: v.racic@ sheffield.ac.uk
Abstract: This paper provides a critical overview of available technology and facilities for determining human-induced dynamic forces of civil engineering structures, such as due to walking, running, jumping and bouncing. In addition to traditional equipment for direct force measurements comprising force plate(s), foot pressure insoles and instrumented treadmills, the review also investigates possibility of using optical motion tracking systems (marker-based and marker-free optoelectronic technology) and non-optical motion tracking systems (inertial sensors) to reproduce contact forces between humans and structures based on body kinematics data and known body mass distribution. Although significant technological advancements have been made in the last decade, the literature survey showed that the state-of-the-art force measurements are often limited to individuals in artificial laboratory environments. Experimental identification of seriously needed group- and crowd-induced force data recorded on as-built structures, such as footbridges, grandstands and floors, still remains a challenge due to the complexity of human actions and the lack of adequate equipment.
Keywords: Ground reaction force, vibration serviceability, human induced vibrations, footbridges, grandstands, floors, staircases
DOI: 10.3233/SAV-2012-0727
Journal: Shock and Vibration, vol. 20, no. 1, pp. 53-67, 2013
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