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Titlebook: Optimum Design of Steel Structures; József Farkas,Károly Jármai Book 2013 Springer-Verlag Berlin Heidelberg 2013 Beam Structures.Conical T

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Newer Mathematical Methods in Structural Optimization,gue, deformations, stability, eigenfrequency, damping, etc. These constraints are usually highly nonlinear, so to find the optimum it is not an easy task. It is as important to have a reliable optimization technique. There are many optimization algorithms available. Non of the algorithm is superior. All of them can have benefits and disadvantages.
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Beams and Columns,he maximum stress from the maximum bending moment, limitation of plate slendernesses to avoid local buckling of flange and web. The minimization of the volume and cost results in different beam sizes, but the cost difference between the two optima is small.
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Experiences with the Optimum Design of Steel Structures,ints take into account the effect of initial imperfections and residual stresses. Some own results are detailed about the optimum design for different structural types such as compressed and bent columns, stiffened plates as well as wind turbine towers. A literature survey is given for optimum design of trusses, frames and industrial applications.
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ight for production engineers, civil and structural engineer.This book helps designers and manufacturers to select and develop the most suitable and competitive steel structures, which are safe, fit for production and economic. An optimum design system is used to find the best characteristics of str
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