Fr. 179.00

An Isogeometric Approach to Beam Structures - Bridging the Classical to Modern Technique

English · Paperback / Softback

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Description

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This book proposes a novel, original condensation method to beam formulation based on the isogeometric approach to reducing the degrees of freedom to conventional two-node beam elements. In this volume, the author defines the Buntara Condensation Formulation: a unique formulation in condensing the dynamic equilibrium equation for beam structures, suitable for reducing the number of unlimited dynamic equations necessary to yield a classic two-node beam element. Professor Buntara's method overcomes the problem of the isogeometric approach where the number of degrees of freedom is increased along with the complexity of the geometrical beam element and facilitates implementation of the codes into the existing beam structures programs, and CAD geometrical data into the conventional FE beam element codes. The book proposes a new reduction method where the beam element can be treated as under the conventional beam element theory that has only two nodes at both ends.

List of contents

Representation of curves on a plane.- Numerical Integration.- Finite Element Formulation of Beam Elements.- Isogeometric approach to beam element.- Condensation Method.- Straight beam element examples.- Circular curved beam element examples.- General curved beam element examples.- Free curved beam element examples.- Appendix A : Straight beam element matrices.- Index.

About the author










Professor Buntara S. Gan is Professor in the Department of Architecture, College of Engineering, Nihon University, Japan.

Product details

Authors Buntara S Gan, Buntara S. Gan
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2018
 
EAN 9783319859262
ISBN 978-3-31-985926-2
No. of pages 233
Dimensions 160 mm x 237 mm x 15 mm
Weight 427 g
Illustrations XIV, 233 p. 65 illus., 44 illus. in color.
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, engineering, Civil Engineering, Mathematical and Computational Engineering, Theoretical and Applied Mechanics, Materials science, Mechanics, Mechanics, Applied, Engineering mathematics, Applied mathematics, Mathematical and Computational Engineering Applications, Maths for engineers, Civil engineering, surveying & building, Structural engineering, Structural Materials

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