Non-Fiction Books:

Mechanics and Design of Tubular Structures

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Paperback / softback
$294.00
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Description

The book contains the latest scientific and engineering results obtained in the field of design of tubular structures. Static and fatigue analysis, theoretical and experimental research results are included. Calculations of tubular structures resistant to earthquakes, analysis of structural connections, application of structural optimization are also important parts. The book helps designers to make safe and economic design, using circular and rectangular hollow sections.

Author Biography:

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 structural models, which guarantee the fulfilment of design and fabrication requirements and minimize the cost function. Realistic numerical models are used as main components of industrial steel structures. Chapter 1 containts some experiences with the optimum design of steel structures Chapter 2 treats some newer mathematical optimization methods. Chapter 3 gives formulae for fabrication times and costs. Chapters 4 deals with beams and columns. Summarizes the Eurocode rules for design. Chapter 5 deals with the design of tubular trusses. Chapter 6 gives the design of frame structures and fire-resistant design rules for a frame. In Chapters 7 some minimum cost design problems of stiffened and cellular plates and shells are worked out for cases of different stiffenings and loads. Chapter 8 gives a cost comparison of cylindrical and conical shells. The book contains a large collection of literatures and a subject list and a name index.
Release date NZ
May 4th, 1999
Audiences
  • Postgraduate, Research & Scholarly
  • Professional & Vocational
Contributors
  • Edited by Jozsef Farkas
  • Edited by Karoly Jarmai
Illustrations
IX, 337 p.
Pages
337
Dimensions
170x244x18
ISBN-13
9783211831458
Product ID
5806809

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