The 2XIIB mirror fusion facility at Lawrence Livermore Laboratory (LLL) was used to evaluate the fire safety of state-of-the-art fusion energy experiments. The primary objective of this evaluation was to ensure the parallel development of fire safety and fusion energy technology. Through fault-tree analysis, we obtained a detailed engineering description of the 2XIIB fire protection system. This information helped us establish an optimum level of fire protection for experimental fusion energy facilities as well as evaluate the level of protection provided by various systems. Concurrently, we analyzed the fire hazard inherent to the facility using techniques that relate the probability of ignition to the flame spread and heat-release potenti...
This continuing research program was initiated in 1977 in order to advance fire protection strategie...
Domino effect is responsible of severe accidents that took place in the chemical and process industr...
Previous studies of the safety and environmental (S and E) aspects of the HYLIFE-II inertial fusion ...
A fault tree analysis (FTA) was used to study the fire-management systems of two LLL fusion experime...
Modern techniques, such as fault tree analysis, can be used to obtain engineering descriptions of sp...
We summarize our research in FY 82 for the DOE-sponsored project, Fire Protection Research for DOE F...
This report describes work performed in fiscal year 1979, on a DOE funded study entitled Fire Protec...
This report summarizes research conducted in fiscal year 1981 for the DOE-supported project, Fire Pr...
This report presents a review of fire protection system operating experiences from particle accelera...
According to experience and probabilistic risk assessments, fires present a significant hazard in a ...
The ignition of accidental releases of flammable substances followed by escalation due to flame impi...
We summarize our research in FY 83 for the DOE-sponsored project, Fire Protection Research for DOE F...
This culminating report is a fire, explosion, and life safety evaluation of a Research Laboratory ( ...
This report combines a fire severity analysis technique with a fault tree methodology for assessing ...
Accidental fires impinging equipment or pipes may cause severe secondary scenarios due to escalation...
This continuing research program was initiated in 1977 in order to advance fire protection strategie...
Domino effect is responsible of severe accidents that took place in the chemical and process industr...
Previous studies of the safety and environmental (S and E) aspects of the HYLIFE-II inertial fusion ...
A fault tree analysis (FTA) was used to study the fire-management systems of two LLL fusion experime...
Modern techniques, such as fault tree analysis, can be used to obtain engineering descriptions of sp...
We summarize our research in FY 82 for the DOE-sponsored project, Fire Protection Research for DOE F...
This report describes work performed in fiscal year 1979, on a DOE funded study entitled Fire Protec...
This report summarizes research conducted in fiscal year 1981 for the DOE-supported project, Fire Pr...
This report presents a review of fire protection system operating experiences from particle accelera...
According to experience and probabilistic risk assessments, fires present a significant hazard in a ...
The ignition of accidental releases of flammable substances followed by escalation due to flame impi...
We summarize our research in FY 83 for the DOE-sponsored project, Fire Protection Research for DOE F...
This culminating report is a fire, explosion, and life safety evaluation of a Research Laboratory ( ...
This report combines a fire severity analysis technique with a fault tree methodology for assessing ...
Accidental fires impinging equipment or pipes may cause severe secondary scenarios due to escalation...
This continuing research program was initiated in 1977 in order to advance fire protection strategie...
Domino effect is responsible of severe accidents that took place in the chemical and process industr...
Previous studies of the safety and environmental (S and E) aspects of the HYLIFE-II inertial fusion ...