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Seismic design methods for steel bui...
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Papagiannopoulos, George A.
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Seismic design methods for steel building structures
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Seismic design methods for steel building structures/ by George A. Papagiannopoulos, George D. Hatzigeorgiou, Dimitri E. Beskos.
作者:
Papagiannopoulos, George A.
其他作者:
Hatzigeorgiou, George D.
出版者:
Cham :Springer International Publishing : : 2021.,
面頁冊數:
xviii, 508 p. :ill. (some col.), digital ;24 cm.
內容註:
Chapter 1. Fundamentals of Seismic Structural Design -- Chapter 2. Fundamentals of Seismic Structural Analysis -- Chapter 3. Force-Based Design of EC8 -- Chapter 4. Direct Displacement-Based Design -- Chapter 5. Hybrid Force-Displacement Design -- Chapter 6. Ductility-Based Plastic Design -- Chapter 7. Energy-Based Plastic Design -- Chapter 8. Design Using Modal Damping Ratios -- Chapter 9. Design Using Modal Behavior Factors -- Chapter 10. Design Using Advanced Analysis -- Chapter 11. Direct Damage-Controlled Design -- Chapter 12. Design Using Seismic Isolation -- Chapter 13. Design Using Supplemental Dampers.
Contained By:
Springer Nature eBook
標題:
Earthquake resistant design. -
電子資源:
https://doi.org/10.1007/978-3-030-80687-3
ISBN:
9783030806873
Seismic design methods for steel building structures
Papagiannopoulos, George A.
Seismic design methods for steel building structures
[electronic resource] /by George A. Papagiannopoulos, George D. Hatzigeorgiou, Dimitri E. Beskos. - Cham :Springer International Publishing :2021. - xviii, 508 p. :ill. (some col.), digital ;24 cm. - Geotechnical, geological and earthquake engineering,v. 511872-4671 ;. - Geotechnical, geological and earthquake engineering ;v. 51..
Chapter 1. Fundamentals of Seismic Structural Design -- Chapter 2. Fundamentals of Seismic Structural Analysis -- Chapter 3. Force-Based Design of EC8 -- Chapter 4. Direct Displacement-Based Design -- Chapter 5. Hybrid Force-Displacement Design -- Chapter 6. Ductility-Based Plastic Design -- Chapter 7. Energy-Based Plastic Design -- Chapter 8. Design Using Modal Damping Ratios -- Chapter 9. Design Using Modal Behavior Factors -- Chapter 10. Design Using Advanced Analysis -- Chapter 11. Direct Damage-Controlled Design -- Chapter 12. Design Using Seismic Isolation -- Chapter 13. Design Using Supplemental Dampers.
The book, after two introductory chapters on seismic design principles and structural seismic analysis methods, proceeds with the detailed description of seismic design methods for steel building structures. These methods include all the well-known methods, like force-based or displacement-based methods, plus some other methods developed by the present authors or other authors that have reached a level of maturity and are applicable to a large class of steel building structures. For every method, detailed practical examples and supporting references are provided in order to illustrate the methods and demonstrate their merits. As a unique feature, the present book describes not just one, as it is the case with existing books on seismic design of steel structures, but various seismic design methods including application examples worked in detail. The book is a valuable source of information, not only for MS and PhD students, but also for researchers and practicing engineers engaged with the design of steel building structures.
ISBN: 9783030806873
Standard No.: 10.1007/978-3-030-80687-3doiSubjects--Topical Terms:
587816
Earthquake resistant design.
LC Class. No.: TA658.44 / .P36 2021
Dewey Class. No.: 624.1762
Seismic design methods for steel building structures
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The book, after two introductory chapters on seismic design principles and structural seismic analysis methods, proceeds with the detailed description of seismic design methods for steel building structures. These methods include all the well-known methods, like force-based or displacement-based methods, plus some other methods developed by the present authors or other authors that have reached a level of maturity and are applicable to a large class of steel building structures. For every method, detailed practical examples and supporting references are provided in order to illustrate the methods and demonstrate their merits. As a unique feature, the present book describes not just one, as it is the case with existing books on seismic design of steel structures, but various seismic design methods including application examples worked in detail. The book is a valuable source of information, not only for MS and PhD students, but also for researchers and practicing engineers engaged with the design of steel building structures.
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