Braced Oil Dampers for Buildings - Takahashi, Osamu; Yokoyama, Atsuki; - Prospero Internetes Könyváruház

Braced Oil Dampers for Buildings: Development and Analytical Modeling
 
A termék adatai:

ISBN13:9781032268637
ISBN10:1032268638
Kötéstípus:Keménykötés
Terjedelem:258 oldal
Méret:234x156 mm
Súly:494 g
Nyelv:angol
Illusztrációk: 187 Illustrations, black & white; 13 Halftones, black & white; 174 Line drawings, black & white; 77 Tables, black & white
584
Témakör:

Braced Oil Dampers for Buildings

Development and Analytical Modeling
 
Kiadás sorszáma: 1
Kiadó: CRC Press
Megjelenés dátuma:
 
Normál ár:

Kiadói listaár:
GBP 145.00
Becsült forint ár:
74 145 Ft (70 615 Ft + 5% áfa)
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Az Ön ára:

59 317 (56 492 Ft + 5% áfa )
Kedvezmény(ek): 20% (kb. 14 829 Ft)
A kedvezmény érvényes eddig: 2024. december 31.
A kedvezmény csak az 'Értesítés a kedvenc témákról' hírlevelünk címzettjeinek rendeléseire érvényes.
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  példányt

 
Rövid leírás:

These seismic vibration control systems are connected using braces in series and installed with pins to the building structure, enabling installation with little impact on the building structure. This book details testing, analysis and case studies of dampers at braced positions and also exposed to small amplitude vibration.

Hosszú leírás:

The high damping force of oil damper vibration control systems in buildings


offers relative safety during earthquakes and at a low environmental


cost. The oil damper is connected using braces in series and is installed with


pins to the building structure, which minimizes the impact on the building


structure and allows installation and removal with ease.


This is the first book detailing experimental work and cases of the use of


oil dampers in buildings. It shows their effectiveness by detailing the testing


and analysis of buildings with them placed at braced positions, exposed to


small amplitude vibration, and without them.


? The only comprehensive presentation of oil damper vibration control


? Covers analysis and design, with case studies and details of testing


and experimental results


The book is organized systematically to suit students and junior professionals


in structural design as well as more specialist engineers. An additional


Python code sample is available online for learning the behaviors of oil


dampers (Jupyter Notebook environment required).


 


Osamu Takahashi is a professor at Tokyo University of Science, founder


of Science Kozo Inc., and an advisor to the New International Structural


Design & Engineering Challenge Association, in Japan.


Atsuki Yokoyama works in the Research and Development Department


of Sanwa Tekki Corporation and has a PhD in Engineering from Tokyo


University of Science.

Tartalomjegyzék:
Part 1. Development and Analytical Modeling of Braced Oil Dampers for Buildings.  1. Introduction.  2. Development of an oil damper for buildings considering damping characteristics and various dependencies.  3. Analytical model of a single building oil damper.  4. Damping characteristics and analytical model of brace-type oil damper.  5. Evaluation of vibration damping performance of actual building using brace-type oil damper and confirmation experiment.  6. Analytical model and verification of building oil damper under small amplitude.  7. Conclusion to Part 1.  Appendix 1. Example of implementation in a high-rise building (office building, Atago 2-chome Project (tentative name)).  Appendix 2. Example of implementation in a reinforced building (Aizu-Tajima Joint Government Building, Fukushima Prefecture).  Part 2. Development of the oil damper stiffness for architectural vibration control and experimental research on structural characterization.  8. Preface.  9. Configuration and Characteristics of Stiffness-Supported Oil Dampers.  10. Analysis Model for Stiffness-Supported Oil Dampers.  11. Examination Involving Time History Response Analysis Based On Single Degree-of-Freedom Model.  12. Converted Is and q Values of Building Incorporating Stiffness-Supported Oil Dampers.  13. Conclusion to Part 2.  Appendix 3. The Low-Loss Viscoelastic Material's Dependence on Temperature and Vibration Frequency.