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Featured researches published by Kazuta Hirata.


ASME 2009 Pressure Vessels and Piping Conference | 2009

Shaking Table Tests With Large Test Specimens of Seismically Isolated FBR Plants: Part 1—Response Behavior of Test Specimen Under Design Ground Motions

Seiji Kitamura; Masaki Morishita; Shuichi Yabana; Kazuta Hirata; Katsuhiko Umeki

The seismic isolation technology is planned to introduce to the next generation’s fast breeder reactor (FBR) plants in order to reduce seismic load subjected to components. To grasp the ultimate behavior of a seismically isolated plant under extremely strong earthquake at a level beyond the design ground motions and to establish ultimate strength design methods of seismic isolators, we made a series of shaking table test with large test specimen of seismically isolated FBR plants. The ultimate behavior test was performed using one of the world largest three-dimensional shaking tables “E-Defense” of National Research Institute for Earth Science and Disaster Prevention of Japan to obtain ultimate behavior data of a technologically-feasible large scale model. Test specimen consists of concrete blocks, reinforced concrete walls and isolation layer with six laminated rubber bearing with lead plug (LBR). The gross mass of upper structure of the test specimen is about 600ton. The diameter of the LRB is 505mm that reduced prototype dimensions to about 1/3. In this study, the following three behaviors were assumed as the ultimate behavior of the seismic isolation system; 1) loss of response reduction function of the isolation system by hardening of rubber, 2) non-linear response behavior by the cracking of the concrete wall and 3) braking of the LRB. When the input acceleration level increased, the test specimen was designed to show the ultimate behavior in the above-mentioned order. The ultimate behavior test of the seismic isolation system was carried out on the condition of two input waves by using two test specimen sets of the same dimensions. In this paper, details of the test specimen including the LRB and loading conditions are described. Response behavior of the test specimen under design ground motions is also reported. The restoring force characteristics of the LRBs were stable. The response acceleration of a horizontal direction measured at the upper structure of the specimen was reduced. Prior to the ultimate behavior tests with strong input waves, the response reduction functions of the test specimen under design ground motions were confirmed.Copyright


Transactions of the Japan Society of Mechanical Engineers. C | 2006

Estimation of Mechanical Characteristics of Rubber Bearings with Multi Lead Plugs for Nuclear Power Plants Based on Finite Element Method

Akihiro Matsuda; Masato Omoto; Kazuta Hirata

This paper shows estimation of mechanical characteristics of rubber bearings with multi lead plugs using finite element analysis. The rubber bearings were the prototypes designed for isolation system for the nuclear power plants. It was required to support vertical stress from 5.0 to 7.5 MPa and keep larger volume of lead than regulated by JEAG guideline for larger damping from the stand point of efficient costs. The effect of number of lead plugs on mechanical characteristics, stress configuration and yielding of steel plates were investigated and compared with a bearings have a lead plug that volume was permitted by JEAG guidelines.


Journal of Sound and Vibration | 2005

Parametric estimation of the cross-power spectral density

Kenji Kanazawa; Kazuta Hirata


Journal of Structural and Construction Engineering (transactions of Aij) | 2000

MODAL IDENTIFICATION FOR A MULTI DEGREE OF FREEDOM SYSTEM USING CROSS SPECTRUM METHOD

Kenji Kanazawa; Kazuta Hirata


Jsme International Journal Series A-solid Mechanics and Material Engineering | 2001

Numerical Simulation of the Loading Tests of Laminated Rubber Bearings

Akihiro Matsuda; Yasuki Ohtori; Shuichi Yabana; Kazuta Hirata


Proceedings of the Japan Society of Civil Engineers | 1983

EVALUATION OF ELASTIC AND DAMPING CHARACTERISTICS OF BEDROCK BY THE VIBRATION TEST OF THE FOUNDATION

Teruyuki Ueshima; Kazuta Hirata; Satoshi Shiomi; Hiroyuki Watanabe


Transactions of the Japan Society of Mechanical Engineers. A | 1999

Simulation on the Laminated Rubber Bearing Tests Using Large Deformation Finite Element Method. Effect of Rubber Material's Compressibility.

Akihiro Matsuda; Yasuki Otori; Shuichi Yabana; Kazuta Hirata


Journal of Structural and Construction Engineering (transactions of Aij) | 2014

EVALUATION ON DAMAGE AND RESIDUAL PERFORMANCE OF LEAD RUBBER BEARINGS AFTER THE SHAKING TABLE TEST

Seiji Nagata; Shuichi Yabana; Kenji Kanazawa; Kazuta Hirata; Katsuhiko Umeki; Satoru Inaba; Takeshi Sano; Takashi Nakamura; Takuya Anabuki; Kazutaka Shirai; Seiji Kitamura; Masaki Morishita


Journal of Structural and Construction Engineering (transactions of Aij) | 2012

SEISMIC RESPONSE OF BASE-ISOLATED STRUCTURE INCLUDING RUPTURE STATE OF RUBBER BEARINGS

Kenji Kanazawa; Shuichi Yabana; Seiji Nagata; Kazuta Hirata; Katsuhiko Umeki; Satoru Inaba; Takeshi Sano; Takashi Nakamura; Takuya Anabuki; Kazutaka Shirai; Seiji Kitamura; Masaki Morishita


Doboku Gakkai Ronbunshu | 1990

AN EVALUATION METHOD OF EFFECTIVE EARTHQUAKE ACCELERATION BASED ON SLIP DISPLACEMENTS

Hitoshi Tochigi; Kazuta Hirata

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Shuichi Yabana

Central Research Institute of Electric Power Industry

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Kenji Kanazawa

Central Research Institute of Electric Power Industry

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Masaki Morishita

Japan Atomic Energy Agency

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Seiji Kitamura

Japan Atomic Energy Agency

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Seiji Nagata

Central Research Institute of Electric Power Industry

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