By Martorell S , Soares C G , Barnett J (eds )
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Extra info for Safety, reliability and risk analysis theory, methods and applications
For this purpose is necessary to develop an integrated tool that simulates the dynamics of the system. To achieve this we will use the BABIECA Simulation Engine to calculate the time evolution state of the plant. Finally we will model the influence of human operator actions by means of SIMPROC. We have modeled the operators influence over the plant state as a separate module to emphasize the significance of operator actions in the final state of the plant. It is possible to plug or unplug SIMPROC to consider the operator influence over the simulation state of the plant in order to compare end states in both cases.
They are executed as logical signals are triggered during plant evolution. 3. Although SIMPROC does not contain an operator model, it allows for the use of pre-defined operator skills, such as ‘‘reactor operator’’ or ‘‘turbine operator’’, each one with specific attributes. This 5 APPLICATION EXAMPLE The example used to validate the new simulation package simulates the operator actions related with the level control of steam generators during MBLOCA transient in a PWR Westinghouse design. 2 procedure, Post LOCA cooldown and depressurization, which is associated with primary cooling depressurization.
In the context of nuclear safety studies (Rasmussen 1975) concluded that human error contributed to 65% of the considered accidents. This contribution is as great or even greater than the contribution associated to system failures. The NRC estimates human error is directly or indirectly involved in approximately 65% of the abnormal incidents (Trager 1985). According to the data of the Incident Reporting System of the International Atomic Energy Agency (IAEA), 48% of the registered events are related to failures in human performances.
Safety, reliability and risk analysis theory, methods and applications by Martorell S , Soares C G , Barnett J (eds )