The Generation IV (Gen IV) very high temperature reactor (VHTR) will either be a prismatic (block) or pebble bed design. However, a prismatic VHTR reference design, based on the General Atomics Gas Turbine-Modular Helium Reactor (GT-MHR) [General Atomics, 1996] has been developed for preliminary analysis purposes [MacDonald, et al., 2003]. Numerical simulation studies reported herein are based on this reference design. In the lower plenum of the prismatic reference design, the flow will be introduced by dozens of turbulent jets from the core above. The jet flow will encounter rows of columns that support the core. The flow from the core will have to turn ninety degrees and flow toward the exit duct as it passed through the forest of support...
The next generation of nuclear power plants will have higher efficiency and improved safety, among o...
Mean velocity and turbulence data that measure turbulent flow phenomena in an approximately 1:7 scal...
The U. S. Department of Energy (DOE) is supporting the development of a next generation nuclear plan...
The final design of the very high temperature reactor (VHTR) of the fourth generation of nuclear pow...
Advanced gas-cooled reactors offer the potential advantage of higher efficiency and enhanced safety ...
Validation simulations are presented for turbulent flow in a staggered tube bank, geometry similar t...
The Very-High-Temperature Reactor (VHTR) is one of six reactor technologies chosen for further devel...
Mean-velocity-field and turbulence data are presented that measure turbulent flow phenomena in an ap...
A preliminary study of the turbulent flow in a scaled model of a portion of the lower plenum of a ga...
The experimental program that is being conducted at the Matched Index-of-Refraction (MIR) Flow Facil...
The United States Department of Energy is promoting the resurgence of nuclear power in the U. S. for...
The very high temperature reactor (VHTR) has been chosen as the concept for the next generation nucl...
The next generation nuclear plant (NGNP), whose development is supported by the U. S. Department of ...
The objective of the present report is to document the design of our first experiment to measure gen...
Graduation date: 2016Since High Temperature Gas-cooled Reactors are being considered as most promisi...
The next generation of nuclear power plants will have higher efficiency and improved safety, among o...
Mean velocity and turbulence data that measure turbulent flow phenomena in an approximately 1:7 scal...
The U. S. Department of Energy (DOE) is supporting the development of a next generation nuclear plan...
The final design of the very high temperature reactor (VHTR) of the fourth generation of nuclear pow...
Advanced gas-cooled reactors offer the potential advantage of higher efficiency and enhanced safety ...
Validation simulations are presented for turbulent flow in a staggered tube bank, geometry similar t...
The Very-High-Temperature Reactor (VHTR) is one of six reactor technologies chosen for further devel...
Mean-velocity-field and turbulence data are presented that measure turbulent flow phenomena in an ap...
A preliminary study of the turbulent flow in a scaled model of a portion of the lower plenum of a ga...
The experimental program that is being conducted at the Matched Index-of-Refraction (MIR) Flow Facil...
The United States Department of Energy is promoting the resurgence of nuclear power in the U. S. for...
The very high temperature reactor (VHTR) has been chosen as the concept for the next generation nucl...
The next generation nuclear plant (NGNP), whose development is supported by the U. S. Department of ...
The objective of the present report is to document the design of our first experiment to measure gen...
Graduation date: 2016Since High Temperature Gas-cooled Reactors are being considered as most promisi...
The next generation of nuclear power plants will have higher efficiency and improved safety, among o...
Mean velocity and turbulence data that measure turbulent flow phenomena in an approximately 1:7 scal...
The U. S. Department of Energy (DOE) is supporting the development of a next generation nuclear plan...