The thermal conductivities of UO2 single crystals containing nanoscale size pores and He gas bubbles are calculated using non-equilibrium molecular dynamics as a function of pore size and gas density in the bubble. As expected, the thermal conductivity decreases as pore size increases, while the decrease in thermal conductivity is determined to be more substantial than the predictions of traditional analytical models by Loeb and Maxwell-Eucken. However, the recent model of Alvarez, which is applicable when the phonon mean-free path is comparable to the pore size, is able to quantitatively reproduce the simulation results. The thermal conductivity of UO2 of the small pores considered here is reduced further when the pore is filled with He ga...
This work is a review of the papers devoted to investigation of the thermal conductivity in single c...
Accurately predicting changes in the thermal conductivity of light water reactor UO2 fuel throughout...
This article reviews the thermal transport properties as predicted by 26 classical interatomic poten...
Classical Molecular Dynamics was used to investigate the effect of nanometric size pores on the ther...
AbstractClassical Molecular Dynamics (MD) was used to investigate the effect of nanometric size pore...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivity of hypo- and hyperstoichiometric UO 2 is calculated as a function of defect...
In the present work, calculations of the thermal conductivity of UO2 were carried out applying class...
The thermal conductivity of hypo- and hyperstoichiometric UO(2) is calculated as a function of defec...
Molecular-dynamics simulations are used to characterize the effects of dislocations on the thermal t...
Classical molecular dynamics simulations have been performed on uranium dioxide (UO2) employing a re...
Uranium dioxide (UO₂) is the most commonly used fuel in light-water nuclear reactors and thermal con...
Uranium, a common element that can be found across the world, can be used in nuclear reactors as UO2...
Molecular dynamics simulations of thermal conduction in nanoporous thin films are performed. Thermal...
This work is a review of the papers devoted to investigation of the thermal conductivity in single c...
Accurately predicting changes in the thermal conductivity of light water reactor UO2 fuel throughout...
This article reviews the thermal transport properties as predicted by 26 classical interatomic poten...
Classical Molecular Dynamics was used to investigate the effect of nanometric size pores on the ther...
AbstractClassical Molecular Dynamics (MD) was used to investigate the effect of nanometric size pore...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivity of hypo- and hyperstoichiometric UO 2 is calculated as a function of defect...
In the present work, calculations of the thermal conductivity of UO2 were carried out applying class...
The thermal conductivity of hypo- and hyperstoichiometric UO(2) is calculated as a function of defec...
Molecular-dynamics simulations are used to characterize the effects of dislocations on the thermal t...
Classical molecular dynamics simulations have been performed on uranium dioxide (UO2) employing a re...
Uranium dioxide (UO₂) is the most commonly used fuel in light-water nuclear reactors and thermal con...
Uranium, a common element that can be found across the world, can be used in nuclear reactors as UO2...
Molecular dynamics simulations of thermal conduction in nanoporous thin films are performed. Thermal...
This work is a review of the papers devoted to investigation of the thermal conductivity in single c...
Accurately predicting changes in the thermal conductivity of light water reactor UO2 fuel throughout...
This article reviews the thermal transport properties as predicted by 26 classical interatomic poten...