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Computational Modeling of Tensegrity Structures: Art, Nature, Mechanical and Biological Systems

Autor Buntara Sthenly Gan
en Limba Engleză Paperback – 16 aug 2020
This book provides an in-depth, numerical investigation of tensegrity systems from a structural point of view, using the laws of fundamental mechanics for general pin-jointed systems with self-stressed mechanisms. Tensegrity structures have been known for decades, mostly as an art of form for monuments in architectural design. In Computational Modeling of Tensegrity Structures, Professor Buntara examines these formations, integrating perspectives from mechanics, robotics, and biology, emphasizing investigation of tensegrity structures for both inherent behaviors and their apparent ubiquity in nature. The author offers numerous examples and illustrative applications presented in detail and with relevant MATLAB codes. Combining a chapter on the analyses of tensegrity structures along with sections on computational modeling, design, and the latest applications of tensegrity structures, the book is ideal for R&D engineers and students working in a broad range of disciplines interested in structural design.

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Specificații

ISBN-13: 9783030178383
ISBN-10: 3030178382
Pagini: 212
Ilustrații: XIV, 212 p. 137 illus., 118 illus. in color.
Dimensiuni: 155 x 235 x 15 mm
Greutate: 0.43 kg
Ediția:1st ed. 2020
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Introduction to Tensegrity Structures.- Analyses of Tensegrity Structures.- Computational Modeling of Tensegrity Structures.- Form-Finding of Tensegrity Structures.- Designing Tensegrity Structures Various Tensegrity Structures.- Tensegrity Structures in Biology.- The Latest Applications of Tensegrity Structures.- Appendixes.


Notă biografică

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


Textul de pe ultima copertă

This book provides an in-depth, numerical investigation of tensegrity systems from a structural point of view, using the laws of fundamental mechanics for general pin-jointed systems with self-stressed mechanisms. Tensegrity structures have been known for decades, mostly as an art of form for monuments in architectural design. In Computational Modeling of Tensegrity Structures, Professor Buntara examines these formations, integrating perspectives from mechanics, robotics, and biology, emphasizing investigation of tensegrity structures for both inherent behaviors and their apparent ubiquity in nature. The author offers numerous examples and illustrative applications presented in detail and with relevant MATLAB codes. Combining a chapter on the analyses of tensegrity structures along with sections on computational modeling, design, and the latest applications of tensegrity structures, the book is ideal for R&D engineers and students working in a broad rangeof disciplines interested in structural design.

Caracteristici

Adopts a lucid while rigorous style appropriate for students and practicing engineers Features practical guides and techniques for creating (form-finding), checking (stability), and designing a tensegrity structure Discusses and illustrates fundamental theories and applications of tensegrity structures across architecture, mechanics, and biology Reinforces concepts with Matlab codes for conducting numerical experimentation of the fundamental mechanisms