Compressive force path method unified von kotsovos michael (5 Ergebnisse)

Sprache: Englisch
Verlag: Springer, 2013
Serie: Engineering Materials, Buch 29 von 110. Buch 29 von 110 - Engineering Materials
- Hardcover
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Zustand: New. This is a Brand-new US Edition. This Item may be shipped from US or any other country as we have multiple locations worldwide.

Sprache: Englisch
Verlag: Springer International Publishing, 2016
Serie: Engineering Materials, Buch 29 von 110. Buch 29 von 110 - Engineering Materials
- Softcover
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - 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.

Sprache: Englisch
Verlag: Springer Verlag, 2016
Serie: Engineering Materials, Buch 29 von 110. Buch 29 von 110 - Engineering Materials
- Softcover
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Paperback. Zustand: Brand New. reprint edition. 240 pages. 9.25x6.10x0.55 inches. In Stock.

Sprache: Englisch
Verlag: Springer, 2016
Serie: Engineering Materials, Buch 29 von 110. Buch 29 von 110 - Engineering Materials
- Softcover
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Taschenbuch. Zustand: Neu. Compressive Force-Path Method | Unified Ultimate Limit-State Design of Concrete Structures | Michael D Kotsovos | Taschenbuch | Engineering Materials | xvi | Englisch | 2016 | Springer | EAN 9783319345420 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, ju…ergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu.

Sprache: Englisch
Verlag: Springer, 2013
Serie: Engineering Materials, Buch 29 von 110. Buch 29 von 110 - Engineering Materials
- Hardcover
Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH
Verkäufer/-in kontaktierenVerkäufer/-in mit 5 SternenZustand: Neu
EUR 58,55
EUR 62,65 VersandVersand von Deutschland nach USAAnzahl: 1 verfügbar
Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - 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.