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12th International Conference on Nuclear Engineering, Volume 3 | 2004

IRIS PRA Preliminary Results and Future Direction

David J. Finnicum; Charles L. Kling; Mario D. Carelli

Westinghouse is currently conducting the pre-application licensing of the International Reactor Innovative and Secure (IRIS) on behalf of the IRIS Consortium. One of the key aspects of the IRIS design is the concept of safety-by-design. The PRA is being used as an integral part of the design process. As part of this effort, a PRA of the initial design was generated to address two key areas. First, the IRIS PRA supported the evaluation of IRIS design issues by providing a solid risk basis for design and analyses required for the pre-licensing evaluation of the IRIS design. The PRA provides the tool for quantifying the benefit of the safety-by-design approach. Second, the current PRA task is beginning the preparation of the more complete PRA analyses and documentation eventually required for Design Certification. One of the key risk-related goals for IRIS is to reduce the EPZ to within the exclusion area by demonstrating that the off-site doses are consistent with the US Protective Action Guidelines (PAGs) for initiation of emergency response so that the required protective actions would be limited to the exclusion area. The results of the preliminary PRA indicated a core damage frequency of 1.2E−08 for internal initiators. This is a very good result but much work is needed to meet the ambitious goal of no emergency response. The next phase of the PRA analyses will involve a two-fold expansion of the PRA. First, as the design and analyses approach a greater level of detail, the assumptions used for the initial PRA will be reviewed and the models will be revised as needed to reflect the improved knowledge of the system design and performance. Furthermore, as the full plant design advances, the PRA will be expanded to incorporate risk associated with external challenges such as seismic and fire, and to address low power and shutdowns modes of operation. As with the initial work, the PRA will serve as a tool to help improve, not just to evaluate the design.Copyright


Archive | 2001

INTEGRAL PWR WITH DIVERSE EMERGENCY COOLING AND METHOD OF OPERATING SAME

Lawrence E. Conway; Mario D. Carelli; C. Lombardi; Luca Oriani; Marco E. Ricotti


Archive | 2001

Unitary, transportable, assembled nuclear steam supply system with life time fuel supply and method of operating same

Mario D. Carelli; Lawrence Green; Dmitry V. Paramonov; Nelson J. Zhan


8th Internat. Conf. on Nuclear Engineering – ICONE-8. | 2000

IRIS: International New Generation Reactor

Mario D. Carelli; Dmitry V. Paramonov; Carlo Lombardi; Marco E. Ricotti; Neil E. Todreas; Ehud Greenspan; J. Vujic; R. Yamazaki; K. Yamamoto; A. Nagano; G. L. Fiorini; P. Dumaz; T. Abram; Hisashi Ninokata


Internat. Conf. on Back-End of the Fuel Cycle – GLOBAL2001 | 2001

IRIS Reactor Conceptual Design

Mario D. Carelli; Lawrence E. Conway; Bojan Petrovic; Dmitry V. Paramonov; M. Galvin; Neil E. Todreas; C. Lombardi; F. Maldari; Marco Enrico Ricotti; L. Cinotti


IAEA International Seminar on Status and Prospects for Small and Medium Sized Reactors | 2001

IRIS: an Integrated International Approach to Design and Deploy a New Generation Reactor

Mario D. Carelli; Bojan Petrovic; Dmitry V. Paramonov; T. Moore; Carlo Lombardi; Marco E. Ricotti; Ehud Greenspan; J. Vujic; Neil E. Todreas; M. Galvin; K. Miller; A. Nagano; K. Yamamoto; Hisashi Ninokata; J. Robertson; F. Oriolo; G. Proto; G. Alonso; M. M. Moraes


Archive | 2011

Optimum configuration for fast reactors

Edward J. Lahoda; Mario D. Carelli; Matthew J. Memmott


IYNC - International Youth Nuclear Conference | 2006

Role of University Research in the development of IRIS

Mario D. Carelli; Bojan Petrovic; Marco E. Ricotti; Neil E. Todreas; Nikola Čavlina; Francesco Oriolo; Hisashi Ninokata


Archive | 2009

COLD SHUTDOWN ASSEMBLY FOR SODIUM COOLED REACTOR

Mario D. Carelli


Archive | 2007

Nuclear renaissance: An assessment of small-medium, integrated and modular plants

Mario D. Carelli; Paola Garrone; Giorgio Locatelli; Mauro Mancini; Marco E. Ricotti; Paolo Trucco

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Dmitry V. Paramonov

Westinghouse Electric Company

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Neil E. Todreas

Massachusetts Institute of Technology

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Bojan Petrovic

Georgia Institute of Technology

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C. Lombardi

Westinghouse Electric Company

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Lawrence E. Conway

Westinghouse Electric Company

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Hisashi Ninokata

Tokyo Institute of Technology

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Charles L. Kling

Westinghouse Electric Company

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Ehud Greenspan

University of California

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J. Vujic

University of California

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