Beryllium, in its pebble form, has been proposed in various blanket concepts to serve different purposes. Thermal property data for such a heterogeneous packed bed is needed, particularly data on the impact of compression forces on its magnitude and consequent temperature profile. The objectives of this work are to obtain and quantify experimental data on the effective thermal conductivity of a Be-He packed bed, on the interface heat conductance between Be and SiC, and on the effects of externally applied pressure on these effective thermal properties. The effective thermal conductivity of a Be-He pebble bed increases as the bed mean temperature increases. The values of effective thermal conductivity vary from 2.15 to 3.00 W/m.K for bed mea...
Several blanket designs based on lithium ceramic and Beryllium pebble beds are currently considered ...
The Helium Cooled Pebble Bed (HCPB) Blanket is one of the reference concepts for the European Breedi...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
In the framework of the European Fusion Technology Programme, Lithium ceramics and Beryllium packed ...
The thermomechanical behavior of titanium beryllide pebble beds was investigated experimentally at a...
bed An unsintered packed bed has been suggested as a material form for the solid breeder and multipl...
Accurate prediction of the thermomechanical responses of particle beds in fusion blankets depends st...
Zur Beschreibung der thermomechanischen Wechselwirkung zwischen keramischen Brutmaterial- und Beryll...
The Helium Cooled Pebble Bed (HCPB) Blanket for fusion power reactors and the ITER breeding blanket ...
PhD (Mechanical Engineering, North-West University, Potchefstroom CampusThe effective thermal conduc...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
The effective thermal conductivity is an important parameter that is representative of the overall h...
A Be packed bed between the high temperature breeder and low temperature coolant has been proposed f...
The thermal properties of the lithium ceramics pebble beds have a significant impact on the temperat...
The experimental determination of mechanical and thermal properties of ceramic pebble beds, such as ...
Several blanket designs based on lithium ceramic and Beryllium pebble beds are currently considered ...
The Helium Cooled Pebble Bed (HCPB) Blanket is one of the reference concepts for the European Breedi...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
In the framework of the European Fusion Technology Programme, Lithium ceramics and Beryllium packed ...
The thermomechanical behavior of titanium beryllide pebble beds was investigated experimentally at a...
bed An unsintered packed bed has been suggested as a material form for the solid breeder and multipl...
Accurate prediction of the thermomechanical responses of particle beds in fusion blankets depends st...
Zur Beschreibung der thermomechanischen Wechselwirkung zwischen keramischen Brutmaterial- und Beryll...
The Helium Cooled Pebble Bed (HCPB) Blanket for fusion power reactors and the ITER breeding blanket ...
PhD (Mechanical Engineering, North-West University, Potchefstroom CampusThe effective thermal conduc...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
The effective thermal conductivity is an important parameter that is representative of the overall h...
A Be packed bed between the high temperature breeder and low temperature coolant has been proposed f...
The thermal properties of the lithium ceramics pebble beds have a significant impact on the temperat...
The experimental determination of mechanical and thermal properties of ceramic pebble beds, such as ...
Several blanket designs based on lithium ceramic and Beryllium pebble beds are currently considered ...
The Helium Cooled Pebble Bed (HCPB) Blanket is one of the reference concepts for the European Breedi...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...