Iutam Symposium On Relations Of Shell Plate Beam And 3d Models


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IUTAM Symposium on Relations of Shell, Plate, Beam and 3D Models


IUTAM Symposium on Relations of Shell, Plate, Beam and 3D Models

Author: George Jaiani

language: en

Publisher: Springer Science & Business Media

Release Date: 2008-09-02


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This proceedings volume contains papers on the main topics reflecting the scientific programme of the symposium: hierarchical, refined mathematical and technical models of shells, plates, and beams; relation of 2D and 1D models to 3D linear, non-linear and physical models; junction problems. In particular, peculiarities of cusped shells, plates, and beams are emphasized and special attention is paid to junction, multibody and fluid-elastic shell (plate, beam) interaction problems and their applications. The contributions are theoretical, practical, and numerical in character. This volume is dedicated to Ilia Vekua on the centenary of his birth.

Analysis of Shells, Plates, and Beams


Analysis of Shells, Plates, and Beams

Author: Holm Altenbach

language: en

Publisher: Springer Nature

Release Date: 2020-06-03


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This book commemorates the 75th birthday of Prof. George Jaiani – Georgia’s leading expert on shell theory. He is also well known outside Georgia for his individual approach to shell theory research and as an organizer of meetings, conferences and schools in the field. The collection of papers presented includes articles by scientists from various countries discussing the state of the art and new trends in the theory of shells, plates, and beams. Chapter 20 is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.

Shell-like Structures


Shell-like Structures

Author: Holm Altenbach

language: en

Publisher: Springer

Release Date: 2016-08-09


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The book presents mathematical and mechanical aspects of the theory of plates and shells, applications in civil, aero-space and mechanical engineering, as well in other areas. The focus relates to the following problems:• comprehensive review of the most popular theories of plates and shells,• relations between three-dimensional theories and two-dimensional ones,• presentation of recently developed new refined plates and shells theories (for example, the micropolar theory or gradient-type theories),• modeling of coupled effects in shells and plates related to electromagnetic and temperature fields, phase transitions, diffusion, etc.,• applications in modeling of non-classical objects like, for example, nanostructures,• presentation of actual numerical tools based on the finite element approach.