Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Vibrations of composite steel-concrete floors induced by human activities
The latest demands in construction design towards slender structures with large spans, large open interiors, unconventional shapes and constructional solutions are leading to the extensive problems related to the serviceability limit state. Slender structures with large spans have lower natural frequencies and lower natural damping, considerably influencing the dynamic response of the structure. Annoying vibrations induced by human activities can significantly affect the structure's functionality, comfort of people and quality of life. Design recommendations for composite steel-concrete floor vibrations can be found in different standards. This paper presents a short overview of design procedures for vibrations of composite steel-concrete beams and design recommendations of floor vibrations induced by human activities, through two design criteria.
Vibrations of composite steel-concrete floors induced by human activities
The latest demands in construction design towards slender structures with large spans, large open interiors, unconventional shapes and constructional solutions are leading to the extensive problems related to the serviceability limit state. Slender structures with large spans have lower natural frequencies and lower natural damping, considerably influencing the dynamic response of the structure. Annoying vibrations induced by human activities can significantly affect the structure's functionality, comfort of people and quality of life. Design recommendations for composite steel-concrete floor vibrations can be found in different standards. This paper presents a short overview of design procedures for vibrations of composite steel-concrete beams and design recommendations of floor vibrations induced by human activities, through two design criteria.
Vibrations of composite steel-concrete floors induced by human activities
Gluhović Nina (Autor:in) / Spremić Milan (Autor:in) / Marković Zlatko (Autor:in) / Buđevac Dragan (Autor:in) / Fric Nenad (Autor:in)
2016
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
Experimental evaluation of induced human walking vibrations on steel-concrete composite floors
DOAJ | 2021
|Effects of Footfall Induced Vibrations on Concrete and Composite Floors
British Library Conference Proceedings | 2015
|Engineering Index Backfile | 1906
|Effects of Footfall Induced Vibrations on Concrete and Composite Floors
Trans Tech Publications | 2015
|CONCRETE FLOORS - Steel-fibre-reinforced concrete floors on composite metal decking
Online Contents | 2003
|