Energy Dissipation Systems for Seismic Applications: Current Practice and Recent Developments
Michael D. Symans, Finley A. Charney, Andrew S. Whittaker, Michael C. Constantinou, Charles A. Kircher, Martin Willard Johnson, Robert J. McNamara
Abstract
Michael D. Symans, Finley A. Charney, Andrew S. Whittaker, Michael C. Constantinou, Charles A. Kircher, Martin Willard Johnson, Robert J. McNamara
Abstract
This paper presents a summary of current practice and recent developments in the application of passive energy dissipation systems for seismic protection of structures. The emphasis is on the application of passive energy dissipation systems within the framing of building structures. Major topics that are presented include basic principles of energy dissipation systems, descriptions of the mechanical behavior and mathematical modeling of selected passive energy dissipation devices, advantages and disadvantages of these devices, development of guidelines and design philosophy for analysis and design of structures employing energy dissipation devices, and design considerations that are unique to structures with energy dissipation devices. A selection of recent applications of passive energy dissipation systems is also presented.
OpenAlex reports 754 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper presents a summary of current practice and recent developments in the application of passive energy dissipation systems for seismic protection of structures. The emphasis is on the application of passive energy dissipation systems within the framing of building structures. Major topics that are presented include basic principles of energy dissipation systems, descriptions of the mechanical behavior and mathematical modeling of selected passive energy dissipation devices, advantages and disadvantages of these devices, development of guidelines and design philosophy for analysis and design of structures employing energy dissipation devices, and design considerations that are unique to structures with energy dissipation devices. A selection of recent applications of passive energy dissipation systems is also presented.
Key concepts: Dissipation, Framing (construction), Computer science, Energy (signal processing), Engineering, Structural engineering, Physics, Quantum mechanics