This paper presents a novel bracing system designed for earthquake risk mitigation for steel structures. It involves a rotary system which a Chebyshev linkage connected to the ground and the building frame. Upon earthquake excitation, movement of structure floor slabs causes a rotational motion in the disc. Displacement-based dampers are installed between the rotary system and the ground which damp the structural vibrations. The system amplifies the travel of the dampers and efficiency is enhanced. In addition, the cross-brace members are always in tension, permitting the use of very slender sections. The paper first reviews the governing equations of the system, followed by a physical model demonstration. A 3-degree-of-system model with th...
As Civil Engineering structures, e.g., tall buildings, long span bridges, deep water offshore platfo...
In this paper we investigate the alternative strategy of suppressing ground-induced vibrations with ...
The objective of this study is to propose and evaluate an innovative frictional damper for structura...
This paper presents a novel bracing system designed for earthquake risk mitigation for steel structu...
There is a relationship between inelastic deformation and energy dissipation in structures that are ...
The basic principle of conventional earthquake-resistant design that has been applied for the last 7...
Advanced structural dissipation devices can be classified into three major groups including passive,...
The paper deals with the proposal and the experimental validation of a novel dissipative bracing sys...
Traditional retrofitting techniques for framed structures are based on widespread strengthening of t...
Designing safe and robust structures to withstand earthquake forces has always been a common goal am...
AbstractNowadays, structural controlling systems, and specially passive and semi-active systems are ...
Structural control has been a major research are in aerospace engineering aimed at solving very comp...
Field observations and comprehensive life-cycle building assessment suggest that buildings designed ...
Recent research indicates that base isolation of buildings eliminates or reduces seismic loading to ...
"Existing reinforced concrete frame buildings with non-ductile detailing could suffer severe damage ...
As Civil Engineering structures, e.g., tall buildings, long span bridges, deep water offshore platfo...
In this paper we investigate the alternative strategy of suppressing ground-induced vibrations with ...
The objective of this study is to propose and evaluate an innovative frictional damper for structura...
This paper presents a novel bracing system designed for earthquake risk mitigation for steel structu...
There is a relationship between inelastic deformation and energy dissipation in structures that are ...
The basic principle of conventional earthquake-resistant design that has been applied for the last 7...
Advanced structural dissipation devices can be classified into three major groups including passive,...
The paper deals with the proposal and the experimental validation of a novel dissipative bracing sys...
Traditional retrofitting techniques for framed structures are based on widespread strengthening of t...
Designing safe and robust structures to withstand earthquake forces has always been a common goal am...
AbstractNowadays, structural controlling systems, and specially passive and semi-active systems are ...
Structural control has been a major research are in aerospace engineering aimed at solving very comp...
Field observations and comprehensive life-cycle building assessment suggest that buildings designed ...
Recent research indicates that base isolation of buildings eliminates or reduces seismic loading to ...
"Existing reinforced concrete frame buildings with non-ductile detailing could suffer severe damage ...
As Civil Engineering structures, e.g., tall buildings, long span bridges, deep water offshore platfo...
In this paper we investigate the alternative strategy of suppressing ground-induced vibrations with ...
The objective of this study is to propose and evaluate an innovative frictional damper for structura...