
Compressive Force-Path Method
Unified Ultimate Limit-State Design of Concrete Structures
Michael D. Kotsovos(Author)
Springer (Publisher)
1st Edition
Published on 17. October 2013
Book
Hardback
XVI, 221 pages
978-3-319-00487-7 (ISBN)
Description
This book presents a method which simplifies and unifies the design of reinforced concrete (RC) structures and is applicable to any structural element under both normal and seismic loading conditions. The proposed method has a sound theoretical basis and is expressed in a unified form applicable to all structural members, as well as their connections. It is applied in practice through the use of simple failure criteria derived from first principles without the need for calibration through the use of experimental data. The method is capable of predicting not only load-carrying capacity but also the locations and modes of failure, as well as safeguarding the structural performance code requirements.
In this book, the concepts underlying the method are first presented for the case of simply supported RC beams. The application of the method is progressively extended so as to cover all common structural elements. For each structural element considered, evidence of the validity of the proposed method is presented together with design examples and comparisons with current code specifications. The method has been found to produce design solutions which satisfy the seismic performance requirements of current codes in all cases investigated to date, including structural members such as beams, columns, and walls, beam-to-beam or column-to-column connections, and beam-to-column joints.
In this book, the concepts underlying the method are first presented for the case of simply supported RC beams. The application of the method is progressively extended so as to cover all common structural elements. For each structural element considered, evidence of the validity of the proposed method is presented together with design examples and comparisons with current code specifications. The method has been found to produce design solutions which satisfy the seismic performance requirements of current codes in all cases investigated to date, including structural members such as beams, columns, and walls, beam-to-beam or column-to-column connections, and beam-to-column joints.
More details
Series
Language
English
Place of publication
Cham
Switzerland
Publishing group
Springer International Publishing
Target group
Primary & secondary/elementary & high school
Graduate
Illustrations
191 s/w Abbildungen
XVI, 221 p. 191 illus.
Dimensions
Height: 241 mm
Width: 160 mm
Thickness: 18 mm
Weight
530 gr
ISBN-13
978-3-319-00487-7 (9783319004877)
DOI
10.1007/978-3-319-00488-4
Schweitzer Classification
Other editions
Additional editions

Michael D. Kotsovos
Compressive Force-Path Method
Unified Ultimate Limit-State Design of Concrete Structures
Book
08/2016
Springer
€53.49
Shipment within 10-15 days

Michael D. Kotsovos
Compressive Force-Path Method
Unified Ultimate Limit-State Design of Concrete Structures
E-Book
10/2013
Springer
€53.49
Available for download
Person
Michael D. Kotsovos is full professor of Civil and Building Engineering, and Director of the Laboratory of Reinforced Concrete Structures at the National Technical University of Athens, Greece.
Content
Reappraisal of concepts underlying reinforced concrete design.- The concept of the compressive-force path.- Modelling of simply-supported beams.- Design of simply supported beams.- Design for punching of flat slabs.- Design of skeletal structures with beam-like elements.- Earthquake-resistant design.- Design examples.