文学部

Yasuhiro Suzuki

  (鈴木 康弘)

Profile Information

Affiliation
Professor, Faculty of Letters, Aichi University
Designated Professor, Disaster Mitigation Research Center, Nagoya University
Degree
Doctor of Science(The University of Tokyo)

Researcher number
70222065
J-GLOBAL ID
200901043944147925
researchmap Member ID
1000166037

External link

Research Interests

 2

Committee Memberships

 4

Papers

 78
  • Hideaki Goto, Tomoru Yamanaka, Tomohiro Makita, Yoshiya Iwasa, Takuro Ogura, Kyoko Kagohara, Yasuhiro Kumahara, Yasuhiro Suzuki, Nobuhisa Matta, Tatsuto Aoki, Wataru Mori, Kenta Haranishi, Takashi Nakata
    Geomorphology, 493 110069-110069, Jan, 2026  
  • Yasuhiro Suzuki, Takashi Nakata, Mitsuhisa Watanabe, Sukhee Battulga, Dangaa Enkhtaivan, Sodnomsambuu Demberel, Chimed Odonbaatar, Amgalan Bayasgalan, Tuvshin Badral
    Seismological Research Letters, Sep 30, 2020  
    <title>Abstract</title> Destructive large earthquakes occur not only along major plate boundaries but also within the interior of plates. To establish appropriate safety measures, identifying intraplate active faults and the potential magnitude of associated earthquakes is essential before an earthquake occurs. This study was conducted to document the geomorphic expression of a previously unrecognized 50-km-long active fault in Ulaanbaatar, the capital of Mongolia. Mapping of the fault was accomplished using the Advanced Land Observation Satellite elevation dataset provided by Japan Aerospace Exploration Agency (JAXA), a stereo-scope interpretation of CORONA satellite images, the emplacement of trenches across the fault trace, and field study. The Ulaanbaatar fault (UBF) is marked by fault scarps on the surface and left-lateral stream deflections. The fault displaces late Pleistocene deposits and is thus considered to be active. Based on the length of the fault, the UBF is believed to be capable of causing earthquakes with magnitudes greater than M 7 and subsequent associated damage to buildings and heavy causalities within the metropolitan area. We strongly suggest that building resistance requirements in Ulaanbaatar should be revised to mitigate for the potential of extensive seismic damage. The results of this study can be used to revise the seismic hazard map and stipulate a new disaster prevention strategy to improve public safety in Ulaanbaatar. It is also possible that there may be other active faults in the vicinity of Ulaanbaatar, and these require investigation.
  • Chadraabal, A., Shinoda, M., Suzuki, Y., Komiyama, H.
    International Journal of Disaster Risk Reduction, 50, 2020  
  • Suzuki, Y.
    Active Faults and Nuclear Regulation: Background to Requirement Enforcement in Japan, 2020  
  • Suzuki, Y, Watanabe, M, Nakata, T
    The International Science Conference on Strengthening Urban Disaster Resilience, 65-70, Sep, 2019  

Misc.

 211

Books and Other Publications

 23

Presentations

 40

Research Projects

 38

Industrial Property Rights

 1