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M. Izquierdo, CSN, C. Queral, R. Herrero, UPM, J. Hortal, M. Sánchez, E. Meléndez, R. Muñoz, CSN) This is the third of the three papers dealing with an important area of code applications. The concerned area is the integration of the Best Estimate system code and the Probabilistic Safety Assessment (PSA) analysis. The current status and some significant results of a pioneering research are discussed in the paper: a fast running thermalhydraulic code is coupled with a typical PSA computer tool. In this way it is possible to generate automatically event trees, thus adding an innovative level to the investigation on the safety of NPP.

E. EdF, CEA, IPSN and Framatome. The benefit expected, over the alternative/simplified approaches pursued in the past, lies in the increase in the level of confidence for the output provided by the simulator. This is achieved by the use of the original code version and at the expense of a huge program of optimization of important numerical steps necessary for achieving the solution. e. the use of a complex thermalhydraulic code into the simulator. The achievement of real time simulation for any generic transient is expected for the year 2003.

The use of a complex thermalhydraulic code into the simulator. The achievement of real time simulation for any generic transient is expected for the year 2003. ) This is the second of the three papers dealing with an important area of code applications. The concerned area is the Best Estimate system code application to the licensing process and to the safety evaluation of a nuclear power plant. Emphasis is given in this context to the Large Break LOCA evaluation. One of the significant results is the confirmation of the possibility of up-rating the core power of the Finnish Loviisa NPP.

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Advanced Thermal-Hydraulic, Neutronic Codes Vol 1 (csni-r2001-2-vol1)


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