A multidimensional, mountain-scale, thermal-hydrologic (TH) numerical model is presented for investigating unsaturated flow behavior in response to decay heat from the radioactive waste repository in the Yucca Mountain unsaturated zone (UZ), Nevada. The model, consisting of both two-dimensional (2-D) and three-dimensional (3-D) representations of the UZ repository system, is based on the current repository design, drift layout, thermal loading scenario, and estimated current and future climate conditions. This mountain-scale TH model evaluates the coupled TH processes related to mountain-scale UZ flow. It also simulates the impact of radioactive waste heat release on the natural hydrogeological system, including heat-driven processes occurr...
This paper presents a large-scale modeling study characterizing fluid flow and tracer transport in ...
This paper presents a field modeling study characterizing fluid flow and tracer transport in the uns...
The energy output of the high-level radioactive waste to be emplaced in the proposed geologic repos...
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...
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...
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 M...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca ...
The 500-700 m thick Yucca Mountain unsaturated zone (UZ) is under extensive investigation as a subsu...
Two complementary numerical models for analyzing high-level nuclear waste emplacement at Yucca Mount...
A three-dimensional site-scale numerical model has been developed to simulate water and gas flow, he...
This paper investigates the impact of proposed repositorythermal-loading on mountain-scale flow and ...
A three-dimensional site-scale numerical model has been developed to simulate water and gas flow, he...
This paper presents a large-scale modeling study characterizing fluid flow and tracer transport in ...
This paper presents a field modeling study characterizing fluid flow and tracer transport in the uns...
The energy output of the high-level radioactive waste to be emplaced in the proposed geologic repos...
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...
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...
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 M...
This paper presents a numerical study on the response of the unsaturated zone (UZ) system of Yucca ...
The 500-700 m thick Yucca Mountain unsaturated zone (UZ) is under extensive investigation as a subsu...
Two complementary numerical models for analyzing high-level nuclear waste emplacement at Yucca Mount...
A three-dimensional site-scale numerical model has been developed to simulate water and gas flow, he...
This paper investigates the impact of proposed repositorythermal-loading on mountain-scale flow and ...
A three-dimensional site-scale numerical model has been developed to simulate water and gas flow, he...
This paper presents a large-scale modeling study characterizing fluid flow and tracer transport in ...
This paper presents a field modeling study characterizing fluid flow and tracer transport in the uns...
The energy output of the high-level radioactive waste to be emplaced in the proposed geologic repos...