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Dive into the research topics where Hitoshi Muta is active.

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Featured researches published by Hitoshi Muta.


Journal of Nuclear Science and Technology | 2014

Quantitative modeling of digital reactor protection system using Markov state-transition model

Hitoshi Muta; Ken Muramatsu

Recently, digital instrumentation and control systems have been increasingly installed for important safety functions in nuclear power plants such as the reactor protection system (RPS) and the actuation system of the engineered safety features. Since digital devices consist of not only electronic hardware but also software that can control microprocessors, the functions specific to digital equipment such as self-diagnostic functions have been becoming available. These functions were not realized with conventional electric components. On the other hand, it has been found that it is difficult to model the digital equipment reliability in probabilistic risk assessment (PRA) using conventional fault tree analysis technique. OECD/NEA CSNI Working Group of Risk Assessment (WGRisk) set up the task group DIGREL to develop the basis of reliability analysis method of the digital safety system and is now discussing about several issues including quantitative dynamic modeling. This paper shows that, taking account of the relationship among the RPS failures, demand after the initiating event, detection of the RPS fault by self-diagnostic or surveillance tests, repair of the RPS components and plant shutdown operation by the plant operators as a stochastic process, the anticipated transient without scram (ATWS) event can be modeled by the event logic fault tree and Markov state-transition diagrams assuming the hypothetical 1-out-of-2 digital RPS.


Archive | 2016

Development of a New Mathematical Framework for Seismic Probabilistic Risk Assessment for Nuclear Power Plants – Plan and Current Status –

Hitoshi Muta; Ken Muramatsu; Osamu Furuya; Tomoaki Uchiyama; Akemi Nishida; Tsuyoshi Takada

After the severe accident in Fukushima Daiichi Nuclear Power Station, safety improvement and enhancement have been installed. In midterm and long term, continuous efforts to improve and enhance safety are required, and technical basis and fundamentals are needed to achieve them.


Volume 2: Plant Systems, Structures, Components, and Materials; Risk Assessments and Management | 2018

Study on PRA Procedure Considering Combination of Multiple Events Using DQFM Methodology

Hirohisa Yamakawa; Hitoshi Muta


Atomic Energy Society of Japan | 2018

Development of PRA Methodology Considering Integration of Seismic-Tsunami Event

Hitoshi Muta


Atomic Energy Society of Japan | 2017

Proposal of Methodology of Tsunami Accident Sequence Analysis Induced by Earthquake Using DQFM Methodology

Hitoshi Muta; Ken Muramatsu


Atomic Energy Society of Japan | 2017

Proposal of Evaluation Methodology of Multiple-Failure-Initiating Events for Seismic PRA

Hitoshi Muta; Ken Muramatsu; Yuki Kameko; Hiromichi Miura; Katsunori Ogura; Tsuyoshi Uchida


Transactions of the JSME (in Japanese) | 2016

Overturning prevention mechanism with frictional sliding for light-weight mechanical structure in seismic input (Examination of fundamental design specification and performance verification test)

Osamu Furuya; Haruo Shimosaka; Hiroshi Kurabayashi; Hitoshi Muta


Atomic Energy Society of Japan | 2016

Study of Thermal Hydraulic Behaviors during Multiple Steam Generator Tube Rupture Events in PWR

Keita Fujiwara; Ken Muramatsu; Hitoshi Muta


Atomic Energy Society of Japan | 2016

Proposal of PRA Methodology Considering State Transitions and Time-Dependent Failure Rates of Components

Hitoshi Muta; Osamu Furuya; Ken Muramatsu


Atomic Energy Society of Japan | 2016

Development of seismic counter measures against cliff edges for enhancement of comprehensive safety of nuclear power plants

Hitoshi Muta

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Ken Muramatsu

Japan Atomic Energy Research Institute

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Akemi Nishida

Japan Atomic Energy Agency

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