Organizational Unit:
George W. Woodruff School of Mechanical Engineering
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Investigation of a helium-cooled modular divertor with multiple jets using a reversed heat flux approach
The development and application of design and optimization methods for energy intensive mechanical systems for challenging environments as applied to a concentrated solar power particle lift system
Thermal-hydraulic performance evaluation and optimization of the T-tube divertor design using numerical simulations
Thermal performance of gas-cooled divertors
Thermo-Fluids Perfromance of Helium Cooled Divertors Emphasizing Plate-Type Concepts
Experimental verification of numerical models of granular flow through wire mesh screens
Numerical simulation of water-cooled sample holders for high-heat flux testing of low-level irradiated materials
Techno-Economic Optimization and Market Potential Study of Small-Scale Particle Heating Receiver Based Central Receiver Power Tower Plants in MENA Region
Optimization of the thermal-hydraulic performance of the helium-cooled modular divertor with multiple jets
On the use of dynamically similar experiments to evaluate the thermal performance of helium-cooled tungsten divertors