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Dive into the research topics where Hiroshi Tagawa is active.

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Featured researches published by Hiroshi Tagawa.


Earthquake Engineering and Engineering Vibration | 2016

Comparison between experimental and analytical results for seesaw energy dissipation systems using fluid viscous dampers

Jae-Do Kang; Hiroshi Tagawa

This paper presents results of experimental and numerical investigations of a seesaw energy dissipation system (SEDS) using fluid viscous dampers (FVDs). To confirm the characteristics of the FVDs used in the tests, harmonic dynamic loading tests were conducted in advance of the free vibration tests and the shaking table tests. Shaking table tests were conducted to demonstrate the damping capacity of the SEDS under random excitations such as seismic waves, and the results showed SEDSs have sufficient damping capacity for reducing the seismic response of frames. Free vibration tests were conducted to confirm the reliability of simplified analysis. Time history response analyses were also conducted and the results are in close agreement with shaking table test results.


Bulletin of Earthquake Engineering | 2018

Eccentric installation of splice plates for compressive strength improvement of rectangular hollow section braces

Hiroshi Tagawa; Yuki Tanaka; Shohei Moriwake

Steel hollow section members are often applied as bracing in steel structures. Field-bolted connections of the slotted-in single splice plate and the gusset plate are popular because of their ease of construction. However, eccentricity between the splice and gusset plate axes reduces the compressive strength of the brace. This study proposes compressive strength improvement of rectangular hollow section braces using eccentrically installed splice plates such that the gusset plate axis coincides with the brace axis. To demonstrate the efficacy of the proposed concept, four compressive loading test results are examined in this study. Test results reveal the influences of splice plate eccentric installation on the brace compressive strength, the out-of-plane displacement, and the strain distribution. The proposed concept is effective for the brace with stiffened splice plates for inducing overall buckling with plastic hinges in the gusset plates. Variation of compressive strength is finally discussed based on the discrepancy between the brace axis and the axis of the plates in which the plastic hinges form at the overall buckling mode ends.


Engineering Structures | 2013

Seismic performance of steel structures with seesaw energy dissipation system using fluid viscous dampers

Jae-Do Kang; Hiroshi Tagawa


Earthquake Engineering & Structural Dynamics | 2014

Experimental evaluation of dynamic characteristics of seesaw energy dissipation system for vibration control of structures

Jae-Do Kang; Hiroshi Tagawa


Journal of Constructional Steel Research | 2016

Cyclic behavior of seesaw energy dissipation system with steel slit dampers

Hiroshi Tagawa; Teruaki Yamanishi; Akira Takaki; Ricky W.K. Chan


Journal of Constructional Steel Research | 2014

Stiffening of bolted end-plate connections with steel member assemblies

Hiroshi Tagawa; Yudu Liu


Structural Design of Tall and Special Buildings | 2018

Prevention of story drift amplification in a 20-story steel frame structure by tension-rod displacement–restraint bracing

Hiroshi Tagawa; Katsuto Inooka


Proceedings of annual research meeting Chugoku Chapter, Architectural Institute of Japan (AIJ) | 2016

260 Compressive loading tests of square-tube braces with eccentrically inserted connection plates

Yuki Tanaka; Hiroshi Tagawa


Proceedings of annual research meeting Chugoku Chapter, Architectural Institute of Japan (AIJ) | 2016

261 Influence of action point of displacement-restraint bracing on seismic response of steel multistory frames

Katsuto Inooka; Hiroshi Tagawa


Proceedings of annual research meeting Chugoku Chapter, Architectural Institute of Japan (AIJ) | 2016

247 Hardening by means of geometrical nonlinearity for seesaw system with steel slit damper

Akira Takaki; Hiroshi Tagawa; Teruaki Yamanishi

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