Designs are described for implementing models for calculating the heat transfer and flow losses in porous debris in the lower head of a reactor vessel. The COUPLE model in SCDAP/RELAP5 represents both the porous and nonporous debris that results from core material slumping into the lower head. Currently, the COUPLE model has the capability to model convective and radiative heat transfer from the surfaces of nonporous debris in a detailed manner and to model only in a simplistic manner the heat transfer from porous debris. In order to advance beyond the simplistic modeling for porous debris, designs are developed for detailed calculations of heat transfer and flow losses in porous debris. Correlations are identified for convective heat trans...
To evaluate the effects of porous deposits over a heating surface on the boiling heat transfer in li...
This thesis addresses the coolability of porous debris beds in the context of severe accident manage...
A porous media solution PORFLO has been developed for the 3-dimensional two-phase flow by describing...
Designs are described for implementing models for calculating the heat transfer and flow losses in p...
iv Designs are described for models to calculate the heat transfer and flow losses in porous debris ...
Designs are described for implementing models for calculating the movement of melted material throug...
The SCDAP/RELAP5 code is being developed at the Idaho National Engineering and Environmental Laborat...
A model is described for the movement of melted metallic material through a ceramic porous debris be...
DoctorMultiphase flow through porous media has been investigated widely in various research fields s...
The thermal response of a fixed porous volumetrically heated debris bed is analyzed. The Modified Di...
During a severe nuclear accident, a part of the molten corium resulting from the core degradation ma...
The DEBRIS Late Phase Melt Progression Model is an assembly of models, embodied in a computer code, ...
The SCDAP/RELAP5 computer code is a best-estimate analysis tool for performing nuclear reactor sever...
The SCDAP/RELAP5 computer code is a best-estimate analysis tool for performing nuclear reactor sever...
One of the severe accident management strategies for nuclear reactors is the melted corium retention...
To evaluate the effects of porous deposits over a heating surface on the boiling heat transfer in li...
This thesis addresses the coolability of porous debris beds in the context of severe accident manage...
A porous media solution PORFLO has been developed for the 3-dimensional two-phase flow by describing...
Designs are described for implementing models for calculating the heat transfer and flow losses in p...
iv Designs are described for models to calculate the heat transfer and flow losses in porous debris ...
Designs are described for implementing models for calculating the movement of melted material throug...
The SCDAP/RELAP5 code is being developed at the Idaho National Engineering and Environmental Laborat...
A model is described for the movement of melted metallic material through a ceramic porous debris be...
DoctorMultiphase flow through porous media has been investigated widely in various research fields s...
The thermal response of a fixed porous volumetrically heated debris bed is analyzed. The Modified Di...
During a severe nuclear accident, a part of the molten corium resulting from the core degradation ma...
The DEBRIS Late Phase Melt Progression Model is an assembly of models, embodied in a computer code, ...
The SCDAP/RELAP5 computer code is a best-estimate analysis tool for performing nuclear reactor sever...
The SCDAP/RELAP5 computer code is a best-estimate analysis tool for performing nuclear reactor sever...
One of the severe accident management strategies for nuclear reactors is the melted corium retention...
To evaluate the effects of porous deposits over a heating surface on the boiling heat transfer in li...
This thesis addresses the coolability of porous debris beds in the context of severe accident manage...
A porous media solution PORFLO has been developed for the 3-dimensional two-phase flow by describing...