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Earthquake Response Analysis for Seismic Isolation System of Single Layer Lattice Domes With 300m Span

300m 단층 래티스 돔의 면진 장치에 대한 지진 반응 해석

  • Received : 2018.07.31
  • Accepted : 2018.08.30
  • Published : 2018.09.15

Abstract

The objective of this study is to investigate the response reducing effect of a seismic isolation system installed between 300m dome and supports under both horizontal and vertical seismic ground motion. The time history analysis is performed to investigate the dynamic behavior of single layer lattice domes with and without a lead rubber bearing seismic isolation system. In order to ensure the seismic performance of lattice domes against strong earthquakes, it is important to investigate the mechanical characteristics of dynamic response. Horizontal and vertical seismic ground motions cause a large asymmetric vertical response of large span domes. One of the most effective methods to reduce the dynamic response is to install a seismic isolation system for observing seismic ground motion at the base of the dome. This paper discusses the dynamic response characteristics of 300m single layer lattice domes supported on a lead rubber seismic isolation device under horizontal and vertical seismic ground motions.

Keywords

References

  1. Midas Programming, MidasIT, 2018
  2. Oya, S., Hangai, Y., & Kawaguchi, K. (2000). Preliminary Design of Single Layer lattice Domes for Experimental Study. Proceedings of the 6th Asian Pacific Conference on Shell and Spatial Structures, Republic of Korea, pp.263-270
  3. Kato, S., Nakazawa, S., Uchikoshi, M., & Mukaiyama, Y. (2000). Response Reducing Effect of Seismic Isolation System Installed between Large Dome and Lower Structures. Proceedings of the 6th Asian Pacific Conference on Shell and Spatial Structures, Republic of Korea, pp.323-330
  4. Park, K. G., & Lee, D. W., "Mechanical Characteristics of Cable Truss Roof Systems", Journal of Korean Association for Spatial Structures, Vol.16, No.2, pp.89-96, 2016 https://doi.org/10.9712/KASS.2016.16.2.089
  5. Kim, H. S., Kim, S. G., & Kang, J. W., "Seismic Response Evaluation of Mid-Story Isolation System According to the Change of Characteristics of the Seismic Isolation Device", Journal of Korean Association for Spatial Structures, Vol.18, No.1, pp.109-116, 2018 https://doi.org/10.9712/KASS.2018.18.1.109
  6. Lee, Y. R., Kim, H. S., & Kang, J. W., "Investigation Into Optimal Installation Position of TMD for Efficient Seismic Response Reduction of Retractable-Roof Spatial Structure", Journal of Korean Association for Spatial Structures, Vol.18, No.2, pp.43-50, 2018 https://doi.org/10.9712/KASS.2018.18.2.43
  7. Shin, S. H., Kim, J., & Park, K. G., "An Analysis of Disaster Pattern by Huge Earthquakes", Journal of the Residential Environment Institute of Korea, Vol.16, No.2, pp.57-72, 2018
  8. Park, K. G., & Kim, J., "Design Characteristics of Nature-Inspired Architecture", Lambert Academic Publishing, pp.1-128, 2018.
  9. Park, K. G., "Nature-Inspired Design of Eco-Friendly Large Space Structures", Journal of Korean Association for Spatial Structures, Vol.18, No.1, pp.6-17, 2018
  10. Park, K. G., Kim, J., & Park, M. J., "The Design Characteristics of Nature Inspired Architecture", Modern Environmental Science and Engineering, Vol.4, No.5, pp.381-414, 2018