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Buckling and Stiffness Optimization of Tall Buildings
Several practical tools for the characterization of the optimal layout of material in a structure have been developed in recent years based on both numerical and analytical approaches. Within the numerical methods, discrete and continuum methodologies have been successfully used in a variety of applications. This paper describes an integrated topology optimization framework using discrete and continuum elements for buckling and stiffness optimization of high-rise buildings. The focus of this work is on linearized buckling and stability as objectives. Examples are discussed to illustrate the proposed methodology for high-rise building design.
Buckling and Stiffness Optimization of Tall Buildings
Several practical tools for the characterization of the optimal layout of material in a structure have been developed in recent years based on both numerical and analytical approaches. Within the numerical methods, discrete and continuum methodologies have been successfully used in a variety of applications. This paper describes an integrated topology optimization framework using discrete and continuum elements for buckling and stiffness optimization of high-rise buildings. The focus of this work is on linearized buckling and stability as objectives. Examples are discussed to illustrate the proposed methodology for high-rise building design.
Buckling and Stiffness Optimization of Tall Buildings
Beghini, Alessandro (Autor:in) / Beghini, Lauren L. (Autor:in) / Baker, William F. (Autor:in) / Paulino, Glaucio H. (Autor:in)
Structures Congress 2014 ; 2014 ; Boston, Massachusetts, United States
Structures Congress 2014 ; 2537-2547
02.04.2014
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
Buckling and Stiffness Optimization of Tall Buildings
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