The purpose of the Ventilation Model is to simulate the heat transfer processes in and around waste emplacement drifts during periods of forced ventilation. The model evaluates the effects of emplacement drift ventilation on the thermal conditions in the emplacement drifts and surrounding rock mass, and calculates the heat removal by ventilation as a measure of the viability of ventilation to delay the onset of peak repository temperature and reduce its magnitude. The heat removal by ventilation is temporally and spatially dependent, and is expressed as the fraction of heat carried away by the ventilation air compared to the fraction of heat produced by radionuclide decay. One minus the heat removal is called the wall heat fraction, or the ...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
International audienceTo study heat and mass transfers inside nuclear facilities equipped with venti...
The purpose of the Ventilation Model is to simulate the heat transfer processes in and around waste ...
This model and analysis report develops, validates, and implements a conceptual model for heat trans...
The purpose of this analysis and model report (AMR) for the Ventilation Model is to analyze the effe...
The ultimate objective of the Civilian Radioactive Waste Management System (CRWMS) Program is to saf...
The proposed nuclear waste repository at Yucca Mountain, Nevada currently includes a minimum of 50 y...
A coupled thermal-hydrologic-airflow model is developed, solving for the transport processes within ...
Optimization and control of displacement ventilation systems in buildings require accurate modeling ...
Predictions of waste canister and repository driftwall temperatures as a function of space and time ...
A thermal seepage model has been developed to evaluate the potential for seepage into the waste empl...
A thermal seepage model has been developed to evaluate the potential for seepage into the waste empl...
An accurate underground mine Ventilation-Thermal-Humidity environmental simulation tool is essential...
Yucca Mountain, Nevada has been designated as the nation's high-level radioactive waste repository a...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
International audienceTo study heat and mass transfers inside nuclear facilities equipped with venti...
The purpose of the Ventilation Model is to simulate the heat transfer processes in and around waste ...
This model and analysis report develops, validates, and implements a conceptual model for heat trans...
The purpose of this analysis and model report (AMR) for the Ventilation Model is to analyze the effe...
The ultimate objective of the Civilian Radioactive Waste Management System (CRWMS) Program is to saf...
The proposed nuclear waste repository at Yucca Mountain, Nevada currently includes a minimum of 50 y...
A coupled thermal-hydrologic-airflow model is developed, solving for the transport processes within ...
Optimization and control of displacement ventilation systems in buildings require accurate modeling ...
Predictions of waste canister and repository driftwall temperatures as a function of space and time ...
A thermal seepage model has been developed to evaluate the potential for seepage into the waste empl...
A thermal seepage model has been developed to evaluate the potential for seepage into the waste empl...
An accurate underground mine Ventilation-Thermal-Humidity environmental simulation tool is essential...
Yucca Mountain, Nevada has been designated as the nation's high-level radioactive waste repository a...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
Drift-emplaced waste canisters are under consideration for the long-term storage of high-level spent...
International audienceTo study heat and mass transfers inside nuclear facilities equipped with venti...