This chapter describes the physical processes and natural and engineered system conditions that affect thermal-hydrological (T-H) behavior in the unsaturated zone (UZ) at Yucca Mountain and how these effects are represented in mathematical and numerical models that are used to predict T-H conditions in the near field, altered zone, and engineered barrier system (EBS), and on waste package (WP) surfaces
In situ thermal tests, which are to be conducted in the Exploratory Studies Facility (ESF) in the un...
A numerical model was developed to predict the coupled thermal, hydrological, and chemical (THC) pro...
The purpose of the multiscale thermohydrologic model (MSTHM) is to predict the possible range of the...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca M...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca ...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca M...
This paper investigates the impact of proposed repository thermal-loading on mountain-scale flow and...
This paper investigates the impact of proposed repository thermal-loading on mountain-scale flow an...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for investi...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for invest...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is developed for investi...
The objectives of this study were to evaluate the thermal-hydrological-chemical (THC) effects on flo...
This paper investigates the impact of proposed repositorythermal-loading on mountain-scale flow and ...
The US Department of Energy is performing detailed site characterization studies at Yucca Mountain t...
The 500-700 m thick Yucca Mountain unsaturated zone (UZ) is under extensive investigation as a subsu...
In situ thermal tests, which are to be conducted in the Exploratory Studies Facility (ESF) in the un...
A numerical model was developed to predict the coupled thermal, hydrological, and chemical (THC) pro...
The purpose of the multiscale thermohydrologic model (MSTHM) is to predict the possible range of the...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca M...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca ...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca M...
This paper investigates the impact of proposed repository thermal-loading on mountain-scale flow and...
This paper investigates the impact of proposed repository thermal-loading on mountain-scale flow an...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for investi...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for invest...
A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is developed for investi...
The objectives of this study were to evaluate the thermal-hydrological-chemical (THC) effects on flo...
This paper investigates the impact of proposed repositorythermal-loading on mountain-scale flow and ...
The US Department of Energy is performing detailed site characterization studies at Yucca Mountain t...
The 500-700 m thick Yucca Mountain unsaturated zone (UZ) is under extensive investigation as a subsu...
In situ thermal tests, which are to be conducted in the Exploratory Studies Facility (ESF) in the un...
A numerical model was developed to predict the coupled thermal, hydrological, and chemical (THC) pro...
The purpose of the multiscale thermohydrologic model (MSTHM) is to predict the possible range of the...