Bolhassani | Funicular Structures | Buch | 978-1-032-45514-3 | sack.de

Buch, Englisch, 218 Seiten, Format (B × H): 207 mm x 276 mm, Gewicht: 746 g

Bolhassani

Funicular Structures

The Art of Building Efficiently
1. Auflage 2025
ISBN: 978-1-032-45514-3
Verlag: Taylor & Francis Ltd

The Art of Building Efficiently

Buch, Englisch, 218 Seiten, Format (B × H): 207 mm x 276 mm, Gewicht: 746 g

ISBN: 978-1-032-45514-3
Verlag: Taylor & Francis Ltd


Funicular structures are structural skeletons designed using methodologies that analyze the flow and direction of forces, which can be categorized as compression, tension, or a combination of both. They are not only elegant, resembling naturally occurring forms, but also highly efficient and can be built with minimal use of relatively low-strength materials, thus minimizing their negative environmental impact. This book presents an in-depth overview of the theoretical foundations and practical methods of designing funicular structures for maximum efficiency.

Beginning with a foundation and introduction to funicular structures for those new to the subject, the book then provides in-depth coverage of cables, arches, shells and vaults, domes, and spatial structures. Chapters explain the theory behind funicular structures in 2D, spatial funicular structures in 3D and examine their structural behavior. Recent and historically famous structures from around the globe are analyzed, and their potential design methods revealed through step-by-step, visual explanations. Structural analysis of funicular structures in different forms are also presented to demonstrate pitfalls and common errors.

Tracing the various methods of designing funicular structures, including the latest computational tools, this book provides a solid foundation for students of architecture, structural design, civil engineering, landscape design, and environmental design, to embark on their own funicular design projects.

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Zielgruppe


Postgraduate, Professional Practice & Development, and Undergraduate Advanced


Autoren/Hrsg.


Weitere Infos & Material


1. History of funicular structures  2. Funicular structures designed by physical form-finding methods  3. Funicular structures designed by geometry  4. Funicular structures designed by computation  5. Structural analysis of funicular structures


Damon Bolhassani is an assistant professor of architecture in the Spitzer School of Architecture, the City College of New York (CCNY), where he specializes in structural design. He also serves as the director of the Advanced Building Construction Lab (ABC Lab). A distinguished Professional Engineer (PE) in New Jersey and Pennsylvania, Dr. Bolhassani holds both an M.S. and a Ph.D. in structural engineering. His academic journey includes notable positions at Drexel University, Bucknell University, and the University of Pennsylvania School of Design. He is the co-author of Introduction to Design of Building Structures and his research and expertise cover a broad spectrum, including geometry-based structural design and analysis, spatial funicular structures, masonry structures analysis and behavior, historical building analysis, and the 3D printing of sustainable, high-performance construction and building materials.

Dr. Bolhassani’s foundation in masonry structures and buildings comes from his early training under the supervision of his father. Growing up in Iran, a country renowned for its magnificent historical masonry structures, he was inspired by these architectural masterpieces to delve deeper into the techniques and knowledge of his ancestors. As a first-generation college student, Dr. Bolhassani pursued his passion for understanding the intricacies of building engineering and the design of masonry structures. His academic and professional career in the United States has been deeply influenced by his roots and the desire to uncover and revive forgotten construction techniques. This book represents a part of Dr. Bolhassani’s journey to explore and document these hidden and forgotten methods of construction, bridging historical craftsmanship with modern engineering practices.



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