Light seismic protection for mass use. Experience and suggestions
DOI: 10.37153/2618-9283-2025-5-48-57
Авторы:
Бубис Александр Александрович
Руководитель ЦИСС ЦНИИСК им. В.А.Кучеренко
Гизятуллин Ильнур Раэлевич
зам. руководителя ЦИСС ЦНИИСК им. В.А.Кучеренко АО «НИЦ «Строительство». Москва, Российская Федерация
Рубрики: Сейсмозащита и сейсмоизоляция зданий и сооружений
Ключевые слова: base isolation system, base isolated buildings, response control, isolator, damper
Аннотация:
Seismic isolation technologies are becoming increasingly widespread in earthquake engineering. The technology, known since ancient times, has been developed in the modern world. The effectiveness of various used seismic protection technologies has been repeatedly confirmed after strong earthquakes in many countries of the world, including Russia. That is why scientific engineering does not stop working to improve the seismic protection of buildings and structures. Today seismic isolation systems are variety of devices. It is beneficial to apply different approaches to seismic isolation for different structural solutions of buildings and structures, different climates and different seismic hazards. The systems developed and used in Russia currently have economic and social efficiency, making it possible to achieve, in comparison with traditional structures, an increase in the seismic reliability of structures, a reduction in the cost of anti-seismic measures, a reduction in damage from earthquakes, and more accurate assessments of investment and insurance risks. The paper presents the huge experience of devices and their combinations using not quite traditional approaches to seismic isolation of buildings and structures, seismic supports made of concrete, seismic protection based on geometrically nonlinear systems, combinations of various devices. Список литературы:
1. Belash T.A. Optimization of energy absorption parameters in structures on seismic insulating foundations: Author. dis. Doc. techn. Sciences. St. Petersburg: PGUPS, 1996.
2. Constantinou M.C., Symans M.D. Experimental Study of Seismic Response of Buildings with Supplemental Fluid Dampers. The Structural Design of Tall Buildings, 1993, no.2, pp. 93–132.
3. Eisenberg J.M. Structures with switch-off connections for seismic areas. М., Stroyizdat. 1976. 229 p.
4. Eisenberg J.M. Spectra of the state of systems with degrading stiffness and their application for assessing the seismic response of structures. Express information of VNIIIS. Sir. Earthquake-resistant construction, 1981, no.6, pp. 24–29.
5. Eisenberg J.M. Experimental methods in research and development of earthquake-resistant structures. Construction and architecture. Express information VNIINTPI. Sir. Earthquake-resistant construction, 1997, no. 1, pp. 4–9.
6. Eisenberg J.M., Smirnov V.I., Dashevsky M.A. Seismic Isolation of Buildings. New Applications and Design Rules in Russia. International Post-SMIRT Conference Seminar on Seismic Isolation. 1995. Santiago, Chile, pp. 457–463.
7. Eisenberg J.M., Smirnov V.I., Uzdin A.M. Progress in Applications and Development Rules for Base Isolation and Passive Energy Dissipation of Civil Buildings, Bridges and Nuclear Reactors in the Russian Federation. International Post-Smirt Conference Seminar on Seismic Isolation, Passive Energy Dissipation and Active Control of Seismic Vibration of Structures, 1997. Taormina, Sicily, Italy, pp. 97–112.
8. Goldenblat I.I., Nikolaenko N.A. Calculation of structures for the action of seismic and impulsive forces. M.: Gosstroyizdat, 1961.
9. Smirnov V.I. Reducing the seismic response of buildings with a flexible lower floor through the use of additional switch-off rigid elements. Sat. VNIIIS, 1981, ser.14, vyp.12, pp. 13–17.
10. Kelly J.M. Progress of Applications, New Projects, R & D and Development of Design Rules for Base Isolation and Passive Energy Dissipation of Civil Buildings, Bridges and Nuclear Plants in the USA. International Post-Smirt Conference Seminar on Seismic Isolation, Passive Energy Dissipation and Active Control of Seismic Vibration of Structures, 1997. Taormina, Sicily, Italy, pp. 69–87.
11. Zhou F.L. Progress of Applications, New Projects, R&D and Development of Design Rules for Base Isolation and Passive Energy Dissipation of Civil Buildings, Bridges and Nuclear and Non-Nuclear Plants in the P.R. China. International Post-Smirt Conference Seminar on Seismic Isolation, Passive Energy Dissipation and Active Control of Seismic Vibration of Structures, 1997. Taormina, Sicily, Italy, pp. 45–56.
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