An optimization method based on uniform damage distribution is used to find optimum design load distribution for seismic design of regular and irregular shear-buildings to achieve minimum structural damage. By using 75 synthetic spectrum-compatible earthquakes, optimum design load distributions are obtained for different performance targets, dynamic characteristics, and site soil classifications. For the same structural weight, optimum designed buildings experience up to 40% less global damage compared to code-based designed buildings. A new general load distribution equation is presented for optimum performance-based seismic design of structures which leads to a more efficient use of structural materials and better seismic performance
The force distribution proposed by codes, which in many cases is framed in the equivalent static for...
The inability of current seismic design codes to reliably predict building performance during earthq...
Direct economic and social losses associated with seismic hazards are evaluated for structures locat...
In the conventional seismic design methods, heightwise distribution of equivalent seismic loads seem...
This paper presents a new method for optimization of the dynamic response of structures subjected to...
The lateral load distributions specified by seismic design provisions are primarily based on elastic...
A methodology is presented for optimization of the dynamic response of concentrically braced steel f...
AbstractThe preliminary design of most buildings is based on equivalent static forces specified by t...
One of the main objectives in seismic design of buildings is to prevent the damage concentration in ...
The chapter provides an overview of optimal structural design procedures for seismic performance. St...
The preliminary design of building structures is normally based on the equivalent lateral forces pro...
Recently, several new optimum loading patterns have been proposed by researchers for fixed-base syst...
The design criteria in current seismic design codes are mainly to control lateral displacements and ...
In this paper, a practical method is developed for performance-based design of RC structures subject...
Optimal load factors (dead, live and seismic) used for the design of buildings may be different, dep...
The force distribution proposed by codes, which in many cases is framed in the equivalent static for...
The inability of current seismic design codes to reliably predict building performance during earthq...
Direct economic and social losses associated with seismic hazards are evaluated for structures locat...
In the conventional seismic design methods, heightwise distribution of equivalent seismic loads seem...
This paper presents a new method for optimization of the dynamic response of structures subjected to...
The lateral load distributions specified by seismic design provisions are primarily based on elastic...
A methodology is presented for optimization of the dynamic response of concentrically braced steel f...
AbstractThe preliminary design of most buildings is based on equivalent static forces specified by t...
One of the main objectives in seismic design of buildings is to prevent the damage concentration in ...
The chapter provides an overview of optimal structural design procedures for seismic performance. St...
The preliminary design of building structures is normally based on the equivalent lateral forces pro...
Recently, several new optimum loading patterns have been proposed by researchers for fixed-base syst...
The design criteria in current seismic design codes are mainly to control lateral displacements and ...
In this paper, a practical method is developed for performance-based design of RC structures subject...
Optimal load factors (dead, live and seismic) used for the design of buildings may be different, dep...
The force distribution proposed by codes, which in many cases is framed in the equivalent static for...
The inability of current seismic design codes to reliably predict building performance during earthq...
Direct economic and social losses associated with seismic hazards are evaluated for structures locat...