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Challenges in High-rise Wooden Structures and the Seismic Design in Japan

  • 발행 : 2022.09.01

초록

Research and development on high-rise or large-scale wooden buildings have been actively conducted both domestically and internationally. The trend of high-rise wooden buildings is driven by increasing awareness of environmental issues. To utilize wooden materials in buildings is believed to lead to the reduction of the environmental impact. On the other hand, Japan is one of the most earthquake-prone countries in the world, and many wooden detached houses have been damaged in past major earthquakes. This paper summarizes the issues that arise in the realization of medium- and high-rise wooden buildings in Japan, and introduces the initiatives that have been seen so far.

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참고문헌

  1. A kiyama, N. (2021) Case study on high and medium-height building in timber structure, Material of panel discussion in AIJ annual meeting 2021, Architectural Institute of Japan.
  2. Akiyama, N., Okamoto S., Yamazaki Y., Tsuchimoto T. (2022) Research on seismic design method for glulam frame structure with tensile-bolted moment resisting joints -Proposal for a design method to estimate stiffness and strength of column-base joints subject to axial force-, Journal of Structural and Construction Engineering (Transactions of AIJ), Architectural Institute of Japan, 87(793), 295-306. https://doi.org/10.3130/aijs.87.295
  3. Inayama, M. et al. (2012) Introduction of the structural prototype of wood school building, Material of panel discussion in AIJ annual meeting 2012, Architectural Institute of Japan.
  4. The Japan Building Disaster Prevention Association (2012) Seismic diagnosis and reinforcement method of wooden detached houses.
  5. Japan Structural Consultants Association (2019) Design on reinforced concrete structure, Ohmsha.
  6. Matsuda, K., Kakuda, Y., Sakata, H., Yamazaki, Y., Ito, H. and Morimoto, T. (2017) Study on mechanical behavior of passively controlled timber structure with self-centering-type CLT wall columns Part1: Outline of test and test result, Summaries of technical papers of Annual Meeting, Architectural Institute of Japan, Structures III, 403-404.
  7. Matsuda, K. and Kasai, K. (2015) Passive control design method for MDOF system composed of bilinear + slip model added with visco-elastic damper, Journal of Structural and Construction Engineering (Transactions of AIJ), Architectural Institute of Japan, 80(716), 1525-1535. https://doi.org/10.3130/aijs.80.1525
  8. Mizoguchi, H., Yamazaki, Y., Matsuda, K. and Akiyama, N. (2022) Study on mechanical behavior of base joint of glued laminated timber column subjected to repeated varying axial load and bending moment, Summaries of technical papers of Annual Meeting Architectural Institute of Japan, Structures III (in printing).
  9. Newmark, N.M., and Hall, W.J. (1973) Seismic design criteria for nuclear reactor facilities, Report No.46, Building practices for disaster mitigation, National bureau of standards, U.S. Department of commerce.
  10. Wu, D., Yamazaki, Y., Sawada, S. and Sakata, H. (2018) Shaking table tests on 1/3-scaled model of wooden horizontal hybrid structure, Journal of Structural Engineering, ASCE, Vol.144, Issue8.
  11. Yamazaki, Y. and Sakata, H. (2014) Dynamic behavior of hybrid structure of wood and RC and the simulation by static analysis, Summaries of technical papers of annual meeting, Architectural Institute of Japan, 555-556.
  12. Yamazaki, Y. and Sakata, H. (2016) Study on dynamic behavior of wooden horizontal hybrid structure: Part1 Simplified modeling method and seismic force evaluation of building structures involving stiff cores, Journal of Structural and Construction Engineering (Transactions of AIJ), Architectural Institute of Japan, 81(720), 291-301. https://doi.org/10.3130/aijs.81.291
  13. Yamazaki, Y., Shimizu, S. and Sakata, H. (2022) Performance evaluation of glulam moment resisting joint subjected to repeated cyclic loading, AIJ Journal of Technology and Design, Architectural Institute of Japan, 28(68), 167-172. https://doi.org/10.3130/aijt.28.167
  14. Yamazaki, Y., Mizoguchi, H., Matsuda, K. and Akiyama N. (2022) Performance evaluation of base joint of glulam column and CLT wall subjected to bending moment and axial force, AIJ Journal of Technology and Design, Architectural Institute of Japan, 28(68), 161-166. https://doi.org/10.3130/aijt.28.161