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ohsaki makoto - optimization of finite dimensional structures

Optimization of Finite Dimensional Structures




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 07/2010
Edizione: 1° edizione





Note Editore

Originally developed for mechanical and aeronautical engineering, structural optimization is not so easily applied to civil and architectural engineering, as structures in these fields are not mass products, but more often unique structures planned in accordance with specific design requirements. The shape and geometry of such structures are determined by a designer or an architect in view of nonstructural performance that includes aesthetics. Until now, books in this area gave little help to engineers working in cooperation with designers, as they covered conceptual material with little consideration of civil engineering applications, or they required a solid background in applied mathematics and continuum mechanics, an area not usually studied by practicing engineers and students in civil engineering. Optimization of Finite Dimensional Structures introduces methodologies and applications that are closely related to design problems encountered in structural optimization, to serve as a bridge between the communities of structural optimization in mechanical engineering and the researchers and engineers in civil engineering. This unparalleled, self-contained work: Provides readers with the basics of optimization of frame structures, such as trusses, building frames, and long-span structures, with descriptions of various applications to real-world problems Summarizes the historical development of methodologies and theorems on optimization of frame structures Introduces many recently developed highly efficient optimization techniques presented with illustrative examples Describes traditional problems with constraints on limit loads, member stresses, compliance, and eigenvalues of vibration, all in detail Offers a unique look at optimization results for spatial trusses and latticed domes Mathematical preliminaries and methodologies are summarized in the book’s appendix, so that readers can attend to the details when needed without having to wade through tedious mathematics in the explanatory main chapters. Instead, small examples that can be solved by hand or by using a simple program are presented in these chapters, making the book readily accessible and highly useful for both classroom use and professional self-study.




Sommario

Various Formulations of Structural OptimizationOverview of structural optimizationHistory of structural optimizationStructural optimization problemPlastic designStress constraintsFully-stressed designOptimality criteria approachCompliance constraintFrequency constraintsConfiguration optimization of trussesMultiobjective structural optimizationHeuristic approachSimultaneous analysis and designDesign Sensitivity AnalysisOverview of design sensitivity analysisStatic responsesEigenvalues of free vibrationLinear buckling loadTransient responsesNonlinear responsesShape sensitivity analysis of trussesTopology Optimization of TrussesIntroductionMichell trussTopology optimization problemOptimization methodsStress constraintsMixed integer programming for topology optimization with discrete variablesGenetic algorithm for truss topology optimizationRandom search method using exact reanalysisMultiple eigenvalue constraintsApplication of data miningConfiguration Optimization of TrussesIntroductionGeneral formulation and methodologies of configuration optimizationGeneration of a link mechanismOptimization of Building FramesOverview of optimization of building framesLocal and global searches of approximate optimal designsParametric optimization of framesLocal search for multiobjective optimization of framesMultiobjective seismic design of building framesOptimization of Spatial Trusses and FramesIntroductionSeismic optimization of spatial trussesHeuristic approaches to optimization of a spatial frameShape optimization considering the designer’s preferenceShape optimization of a single-layer latticed shellConfiguration optimization of an arch-type truss with local geometrical constraintsSeismic design for spatially varying ground motionsSubstructure approach to seismic optimizationAppendixMathematical preliminariesRayleigh’s principleSingular value decompositionDirectional derivative and subgradientOptimization methodsSingle-point-search heuristicsMultiobjective programmingConstraint approachLinear weighted sum approachGoal programmingParametric structural optimization problemBezier surfaceAdjoint curveResponse spectrum approachCQC methodDesign response spectrumSensitivity analysis of mean maximum responseList of available standard sections of beams and columns










Altre Informazioni

ISBN:

9781439820032

Condizione: Nuovo
Dimensioni: 9.25 x 6.25 in Ø 1.60 lb
Formato: Copertina rigida
Illustration Notes:183 b/w images, 32 tables and approx 709
Pagine Arabe: 439


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