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6 edition of Stability and Optimization of Structures found in the catalog.

Stability and Optimization of Structures

Generalized Sensitivity Analysis (Mechanical Engineering Series) (Mechanical Engineering Series)

by Makoto Ohsaki

  • 111 Want to read
  • 6 Currently reading

Published by Springer .
Written in English


The Physical Object
Number of Pages288
ID Numbers
Open LibraryOL7447690M
ISBN 100387681833
ISBN 109780387681832

Search within book. Front Matter. Pages I-XX. PDF. Section 1 Structural optimization. Front Matter. Pages PDF. Minimum Volume and Cost Design of a Welded Square Cellular Plate with Welded T-Stiffeners. József Farkas. Pages


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Stability and Optimization of Structures by Makoto Ohsaki Download PDF EPUB FB2

Stability and Optimization of Structures book and Optimization of Structures: Generalized Sensitivity Analysis is the first book to address issues of structural optimization against nonlinear buckling.

Through the investigation of imperfection sensitivity, worst imperfection and random imperfection based on concrete theoretical framework, it is shown that optimization against buckling does not necessarily produce an Price: $ Stability and Optimization of Structures: Generalized Sensitivity Analysis is the first book to address issues of structural optimization against nonlinear buckling.

The aim of this book is to present up-to-date methodologies in the analysis and optimization of the elastic stability of lightweight statically determinate, and in- determinate, space structures made of flexible members which are highly stiff when loaded centrally at the by: 6.

Makoto Ohsaki, Kiyohiro Ikeda, Stability and Optimization of Structures: Generalized Sensitivity Analysis is the first book to address issues of structural optimization against nonlinear buckling.

Through the investigation of imperfection sensitivity, worst imperfection and random imperfection based on concrete theoretical framework, it is shown that optimization against buckling does not necessarily. This book focuses on the optimization of a geometrically-nonlinear structure under stability constraint.

It presents a deep insight into optimization-based and computer-assisted stability design of discrete structures. The aim of this book is to present up-to-date methodologies in the analysis and optimization of the elastic stability of lightweight statically determinate, and in- determinate, space structures made of flexible members which are highly stiff when loaded centrally at the nodes.

These are flat andBrand: Birkhäuser Basel. Univ. Prof. Britvec (auth.) The aim of this book is to present up-to-date methodologies in the analysis and optimization of the elastic stability of lightweight statically determinate, and in- determinate, space structures made of flexible members which are highly stiff.

In the structural optimization process for an engineer, it is important to know the behavior of the structure well, the stresses, the deformations, the stability, the eigenfrequency, the damping, etc.

It is as important to have a reliable optimization technique to find the optimum. Little attention in structural optimization has been paid to the cost optimization problem, particularly of realistic three-dimensional structures.

Cost optimization is becoming a priority in all civil engineering projects, and the concept of Life-Cycle Costing is penetrating design, manufacturing and construction organizations. Stability is an essential precondition for a structure to be able to carry the loads it is subjected to, and therefore being suitable for structural analysis.

Since structural analysis is based on solving the unknown forces (or displacements) within a structure using some equations, it is essentially the comparison of the. Stability and Optimization of Structures: Generalized Sensitivity Analysis is the first book to address issues of structural optimization against nonlinear buckling.

Through the investigation of imperfection sensitivity, worst imperfection and random imperfection based on concrete theoretical framework, it is shown that optimization against buckling does not necessarily produce an 4/5(1).

Summary "Stability and Optimization of Structures: Generalized Sensitivity Analysis" is the first book to address issues of structural optimization against nonlinear : Ohsaki, Makoto.

"Stability and Optimization of Structures: Generalized Sensitivity Analysis is the first book to address issues of structural optimization against nonlinear buckling.

Stability and optimization of flexible space structures. 21 Want to read; 40 Currently reading; Published by Kirkhäuser Verlag in Basel, Boston. Written in English Subjects: Flexible structures., Structural stability., Structural optimization.

لینک ها به روز رسانی شدند. نام کتاب: Stability and Optimization of Structures – Generalized Sensitivity Analysis نویسنده: Makoto Ohsaki و Kiyohiro Ikeda ویرایش: ۱ سال انتشار: ۲۰۰۷ فرمت: PDF تعداد صفحه: ۲۲۱ کیفیت: OCR انتشارات: Springer دانلود کتاب – حجم: ۳٫۰۰ مگابایت جهت.

Ohsaki, Stability and Optimization of Structures - Generalized Sensitivity Analysis, Hassan Rahnema | جمعه, ۱۳ آذر ۱۳۹۴، ۰۱:۰۷ ب.ظ لینک ها به روز رسانی شدند. The purpose of the present book is to fill this gap. The contents include a discussion of the basic structural stability and structural optimization problems and the pertinent solution methods.

A crucial element of structural and continuum mechanics, stability theory has limitless applications in civil, mechanical, aerospace, naval and nuclear engineering. This text of unparalleled scope presents a comprehensive exposition of the principles and applications of stability analysis.5/5(1).

Summary: The aim of this book is to present up-to-date methodologies in the analysis and optimization of the elastic stability of lightweight statically determinate, and in- determinate, space structures made of flexible members which are highly stiff when loaded centrally at the nodes.

improving the stability of existing structures. EM 1 Dec 05 Background a. General. Engineer Manuals published over the past 40 years have set stability requirements for the different major civil works structures.

For sliding and bearing, the stability. Structural Optimization for 3D Printing In the era of 3D printing (and more broadly, digital fabri-cation), structural optimization becomes increasingly rele-vant in computational design [4].

Skin-frame structures [5], honeycomb-like Voronoi structures [6], tree-like support-ing structures [7], and bone-inspired porous structures [8]. In most structures, deflection is a major consideration. In the above truss structure, let us assume that the maximum vertical deflection at C is δmax = 2 mm.

By using Castigliano’s theorem, we obtain the deflection constraint: In the above structure, tan θ= and tan α= 2/3. The other set of constraints arises from the stability. Stability, fatigue and optimization of thin-walled structures under cryogenic conditions: application in the structural design of colliders and cryogenic transfer lines: Author(s) Skoczen, Blazej (CERN) Corporate author(s) CERN.

Geneva: Publication Geneva: CERN, - p. Series (CERN Yellow Reports: Monographs) Subject category. Topology optimization is a free-form approach to designing efficient structural layouts.

Although highlighted repeatedly in literature for its ability to identify creative, high performance designs, it is also well known that oversimplification of the underlying optimization formulation can lead to impractical structural solutions. VLADIMIR KOBELEV, PHD, is a professor of mechanical engineering at the University of Siegen in Germany.

He is a member of the International Society for Structural and Multidisciplinary Optimization and EUROMECH. He has authored three other books, including Durability of Springs, and has contributed over 60 articles to international scientific journals.

Shell Structures: Theory and Applications, Volume 4 contains contributions presented at the 11th Conference on Shell Structures: Theory and Applications (Gdansk, Poland, October ). The papers reflect a wide spectrum of scientific and engineering problems from theoretical modelling through strength, stability and dynamic behaviour.

The rest of this article is arranged as follows. In Section 2, the structural optimization problem is described. In Section 3, the proposed fuzzy strategy and Interactive Search Algorithm (ISA) are explained in detail.

The performance of the presented fuzzy strategy is numerically verified on some structural optimization problems in Section 4. The methods are described to determine geometry of optimal structures and their homogenized behavior.

Other topics include min-max formulation, and stability of optimal solutions. Many examples of structural optimization are discussed. The book is addressed to students.

Practical guide to structural stability theory for the design of safe steel structures Not only does this book provide readers with a solid foundation in structural stability theory, it also offers them a practical, working knowledge of how this theory translates into design specifications for safe steel structures.

Structural Stability of Steel features detailed discussions of the elastic and. LATERAL DYNAMIC STABILITY ANALYSIS OF A CANTILEVER LAMINATED COMPOSITE BEAM WITH AN ELASTIC SUPPORT. International Journal of Structural Stability and Dynamics, Vol.

07, Issue. 03, p. International Journal of Structural Stability and Dynamics, Vol. 07, Issue. 03, p. Goal of this book For many general purpose optimization methods, the typical approach is to just try out the method on the problem to be solved.

The full benefits of convex optimization, in contrast, only come when the problem is known ahead of time to be convex. Of course, many optimization problems are not convex, and it can be. 11th World Congress on Structural and Multidisciplinary Optimisation 07th th, JuneSydney Australia 1 Stability-ensured topology optimization of boom structures with stress constraints Wenjun Li1, Qicai Zhou1, Zhen Jiang2, Wei Chen2 1 Tongji University, Shanghai, China, @, [email protected] 2 Northwestern University, Evanston, USA.

Written by two authors with 80 years of combined professional and academic experience, the objective of Stability of Structures: Principles and Applications is to provide engineers and architects with a firm grasp of the fundamentals and principles that are essential to performing effective stability analysis.

The book website, listed below. This paper addresses single and multiobjective topology optimization of truss-like structures using genetic algorithms (GA's).

In order to improve the performance of the GA's (despite the presence of binary topology variables) a novel approach based on kinematic stability repair (KSR) is proposed.

Nonlinear Optimization of Vehicle Safety Structures: Modeling of Structures Subjected to Large Deformations provides a cutting-edge overview of the latest optimization methods for vehicle structural book focuses on large deformation structural optimization algorithms and applications, covering the basic principles of modern day topology optimization and comparing the benefits and.

Thermodynamic Theory of Structure, Stability and Fluctuations by P. Glansdorff; Ilya Prigogine and a great selection of related books, art and collectibles available now at Impermeability condition on the fluid and structure interface as well as the zero radial velocity component on the exterior shell give the coupled equations of motion governing the dynamics of fluid-loaded coaxial cylindrical shells.

Using the coupled fluid–structural model, stability boundaries are determined for the rotating interior shell. Finally, most of the studies on the design of rib-stiffened structures by topology optimization only focused on structural stiffness performance, while the structural stability, another key factor.

Kevin M. Passino and Kevin L. Burgess, Stability Analysis of Discrete Event Systems John Wiley and Sons, NY, Synopsis: Covers the theory and application of stability analysis for discrete event main relevant stability theory is developed, models are introduced, and three classes of applications are considered: load balancing systems for computer networks, scheduling flexible.

Structural engineering is a sub-discipline of civil engineering in which structural engineers are trained to design the 'bones and muscles' that create the form and shape of man made structures. Structural engineers need to understand and calculate the stability, strength and rigidity of built structures for buildings and nonbuilding structural designs are integrated with those.

Motivation: Macromolecular crystal structures in the Protein Data Bank (PDB) are a key source of structural insight into biological processes. These structures, some >30 years old, were constructed with methods of their era. With PDB_REDO, we aim to automatically optimize these structures to better fit their corresponding experimental data, passing the benefits of new methods in.Optimization of large structures consisting of thousands of members subjected to the highly nonlinear constraints of the actual commonly used design codes, such as the American Institute of Steel Construction (AISC), Allowable Stress Design (ASD), or Load and Resistance Factor Design (LRFD) specifications (AISC), requires high-performance computing resources.Stability of Structures | ScienceDirect Stability of Structures, Ashwini Kumar, Allied Publishers Ltd., New Delhi, Stability Theory of Structures, Ashwini Kumar, Tata McGraw Hill, New Delhi, Books (Edited)/Proceedings.

ICCMS Proceedings of the International Congress on Computational Mechanics and imulation,IIT Kanpur, December.