In order to reduce the accumulation of hydrogen and thus to mitigate the risk of combustion, many countries have installed passive autocatalytic recombiners (PARs) within light water reactor containments. The severe hydrogen combustion events of the recent Fukushima Daiichi accident are likely to incentivize an increased demand in upgrading nuclear power plants with PARs. Numerical simulation is an important tool for assessing PAR operation during a severe accident in terms of efficiency and proper installation. Advanced numerical PAR models are required for the challenging boundary conditions during a severe accident, for example, low oxygen amount, high steam amount, and presence of carbon monoxide. The REKO-DIREKT code has been developed...
The evaluation of Passive Autocatalytic Recombiners (PARs) performance has been foreseen from the EU...
Due to severe accidents in nuclear power plants, a significant amount of hydrogen can be produced. I...
International audienceDuring the course of a severe accident in a Pressurized Water Reactor (PWR), l...
Passive Autocatalytic Recombiners (PAR) are installed inside the containment of nuclear power plants...
In the case of a severe accident in light-water reactors, a large amount of hydrogen could be genera...
International audienceHydrogen safety is a relevant topic for both nuclear fission and fusion power ...
This study deals with numerical modeling of passive autocatalytic hydrogen recombiners (PARs). Such ...
In the case of a severe accident in light-water reactors, a large amount of hydrogen could be genera...
In order to achive a high degree of safety in nuclear power plants and prevent possible accident sce...
In the event of a severe accident with core damage in a water-cooled nuclear reactor, combustible ga...
In the broader context of hydrogen risk mitigation in nuclear power plants (NPPs), experimental stud...
MATERIAUX:SURFACES+FMOIn the context of hydrogen risk mitigation in nuclear power plants (NPPs), exp...
International audienceIn the case of a severe accident inside a water-cooled fusion facility, like I...
A large amount of Hydrogen gas is expected to be released within the dry containment of a pressurize...
The evaluation of Passive Autocatalytic Recombiners (PARs) performance has been foreseen from the EU...
Due to severe accidents in nuclear power plants, a significant amount of hydrogen can be produced. I...
International audienceDuring the course of a severe accident in a Pressurized Water Reactor (PWR), l...
Passive Autocatalytic Recombiners (PAR) are installed inside the containment of nuclear power plants...
In the case of a severe accident in light-water reactors, a large amount of hydrogen could be genera...
International audienceHydrogen safety is a relevant topic for both nuclear fission and fusion power ...
This study deals with numerical modeling of passive autocatalytic hydrogen recombiners (PARs). Such ...
In the case of a severe accident in light-water reactors, a large amount of hydrogen could be genera...
In order to achive a high degree of safety in nuclear power plants and prevent possible accident sce...
In the event of a severe accident with core damage in a water-cooled nuclear reactor, combustible ga...
In the broader context of hydrogen risk mitigation in nuclear power plants (NPPs), experimental stud...
MATERIAUX:SURFACES+FMOIn the context of hydrogen risk mitigation in nuclear power plants (NPPs), exp...
International audienceIn the case of a severe accident inside a water-cooled fusion facility, like I...
A large amount of Hydrogen gas is expected to be released within the dry containment of a pressurize...
The evaluation of Passive Autocatalytic Recombiners (PARs) performance has been foreseen from the EU...
Due to severe accidents in nuclear power plants, a significant amount of hydrogen can be produced. I...
International audienceDuring the course of a severe accident in a Pressurized Water Reactor (PWR), l...