Fuel assembly bow is an intricate industrial issue occurring in PWR nuclear cores, which relies on multiphysics coupled phenomena based on mechanics, thermal hydraulics and neutronics.Amongst many causes, the hydraulic forces induced by in-core flow redistributions play an important role on the fuel assembly mechanical deflection.Because deformation spread out over days, weeks or months, fuel assembly bow is often studied as a quasistatic fluid-structure interaction with neutronics parameters as inputs only. In order to set up an efficient partitioned two-way coupling between mechanics and hydraulics representing a full PWR core, simplified models must be used.Regarding hydraulics, common strategies imply porous media, or even more time-sav...
International audienceThe pressure and velocity distribution within and between full cross-section f...
ABSTRACT Pressurized Water Reactor (PWR) seismic or Lost Of Coolant Accident (LOCA) loads could resu...
International audienceIn the pressure vessel of a PWR, the core is filled of up to 241 fuel assembli...
International audienceAbstract Fuel assemblies’ deformation is an industrial issue that has been fir...
International audienceIn the pressure vessel of a PWR the core is constituted of a number of fuel as...
International audienceProgressive deformation of nuclear fuel assemblies that occurs during a succes...
Fuel assembly bow in a nuclear core is a topic of interest for safety and performance of power plant...
International audienceThe effect of assemblies bowing in PWR nuclear reactors onto core neutronics i...
International audienceNuclear industry needs tools to design reactor cores in case of earthquake. A ...
International audienceIn nuclear Pressurized Water Reactors, fuel assemblies are slender structures ...
The designing of a pressurized water reactor core subjected to seismic loading, is a major concern o...
Fuel Assemblies within the core of Pressurized Water Reactor (PWR) are affected by the bow phenomeno...
Fuel assembly bowing is a known phenomenon observed in many PWR reactors all over the world. The phe...
International audienceThe pressure and velocity distribution within and between full cross-section f...
ABSTRACT Pressurized Water Reactor (PWR) seismic or Lost Of Coolant Accident (LOCA) loads could resu...
International audienceIn the pressure vessel of a PWR, the core is filled of up to 241 fuel assembli...
International audienceAbstract Fuel assemblies’ deformation is an industrial issue that has been fir...
International audienceIn the pressure vessel of a PWR the core is constituted of a number of fuel as...
International audienceProgressive deformation of nuclear fuel assemblies that occurs during a succes...
Fuel assembly bow in a nuclear core is a topic of interest for safety and performance of power plant...
International audienceThe effect of assemblies bowing in PWR nuclear reactors onto core neutronics i...
International audienceNuclear industry needs tools to design reactor cores in case of earthquake. A ...
International audienceIn nuclear Pressurized Water Reactors, fuel assemblies are slender structures ...
The designing of a pressurized water reactor core subjected to seismic loading, is a major concern o...
Fuel Assemblies within the core of Pressurized Water Reactor (PWR) are affected by the bow phenomeno...
Fuel assembly bowing is a known phenomenon observed in many PWR reactors all over the world. The phe...
International audienceThe pressure and velocity distribution within and between full cross-section f...
ABSTRACT Pressurized Water Reactor (PWR) seismic or Lost Of Coolant Accident (LOCA) loads could resu...
International audienceIn the pressure vessel of a PWR, the core is filled of up to 241 fuel assembli...