A Study on the Response Instability of Seismically Isolated Structures Affected by Ground Inclination During Earthquakes Part 1 : Estimation of Ground Inclination During Earthquakes and the Influence of Static Ground Inclination

Author:

Miyazaki Mitsuo, ,Nishimura Yukihiro

Abstract

Seismic isolation can provide superior building safety and dynamic performance during strong earthquakes, however, it is known that some near-source ground motions produce excessive response deformations, which may be larger than the allowable capacity of the isolation devices. Isolation systems with longer periods and higher damping are more capable of resisting such deformations, and the author proposed new isolation systems with periods of 10 sec, or even longer. Longer isolation periods, however, mean less resistance and restoring force in the isolation systems, which may cause concerns about unstable response characteristics during strong earthquakes. One such unstable behavior is the possibility of excessive horizontal displacements of the isolation system resulting from ground inclination. Based on numerical analyses using existing vertical ground motion records, this paper estimates the ground inclination during earthquakes and studies the anticipated horizontal deformation of isolated structures that might be induced by such ground inclination.

Publisher

Fuji Technology Press Ltd.

Subject

Engineering (miscellaneous),Safety, Risk, Reliability and Quality

Reference20 articles.

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2. M. Miyazaki, “The Next Generation of Seismic Isolation, – Going beyond Seismic Design Dominated by Earthquakes –,” J. of Disaster Research Vol.3, No.6, Dec., 2008.

3. S. Winchester, “A Crack in the Edge of the World, America and the Great California Earthquake of 1906,” (Japanese Edition 2006) Hayakawa Publishing, Inc.

4. P. L. Fradkin, “The Great Earthquake and Firestorms of 1906,” University of California Press, pp. 52-54, 2005.

5. G. Hansen and E. Condon, “Denial of Disaster, The Untold Story and photographs of the San Francisco earthquake and Fire of 1906,” Cameron and Company, 1989.

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