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Recent Advances In The Design Of Structures With Passive Energy Dissipation Systems Giuseppe Ricciardi

  • SKU: BELL-55889548
Recent Advances In The Design Of Structures With Passive Energy Dissipation Systems Giuseppe Ricciardi
$ 31.00 $ 45.00 (-31%)

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Recent Advances In The Design Of Structures With Passive Energy Dissipation Systems Giuseppe Ricciardi instant download after payment.

Publisher: MDPI
File Extension: PDF
File size: 40.5 MB
Pages: 266
Author: Giuseppe Ricciardi, Dario De Domenico, Ruifu Zhang
ISBN: 9783039360611, 3039360612
Language: English
Year: 2020

Product desciption

Recent Advances In The Design Of Structures With Passive Energy Dissipation Systems Giuseppe Ricciardi by Giuseppe Ricciardi, Dario De Domenico, Ruifu Zhang 9783039360611, 3039360612 instant download after payment.

Passive vibration control plays a crucial role in structural engineering. Common solutions include seismic isolation and damping systems with various kinds of devices, such as viscous, viscoelastic, hysteretic, and friction dampers. These strategies have been widely utilized in engineering practice, and their efficacy has been demonstrated in mitigating damage and preventing the collapse of buildings, bridges, and industrial facilities. However, there is a need for more sophisticated analytical and numerical tools to design structures equipped with optimally configured devices. On the other hand, the family of devices and dissipative elements used for structural protection keeps evolving, because of growing performance demands and new progress achieved in materials science and mechanical engineering. This Special Issue collects 13 contributions related to the development and application of passive vibration control strategies for structures, covering both traditional and innovative devices. In particular, the contributions concern experimental and theoretical investigations of high-efficiency dampers and isolation bearings; optimization of conventional and innovative energy dissipation devices; performance-based and probability-based design of damped structures; application of nonlinear dynamics, random vibration theory, and modern control theory to the design of structures with passive energy dissipation systems; and critical discussion of implemented isolation/damping technologies in significant or emblematic engineering projects.

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