Lithium titanate (Li2TiO3) is a potential ceramic material for generation of tritium, which is exploited as a fuel in fusion reactor. However, Li2TiO3 has poor thermal conductivity, due to which thermal management of this material during nuclear reaction is a bottleneck. If this material is used in the form of pebble packed in a column or vessel, namely Test Blanket Module (TBM), the effective thermal conductivity is further brought down due to interstitial voids in the packed bed and also due to point to point contact between spherical pebbles. It is therefore essential to develop a suitable technique to enhance heat transfer properties of a packed pebble bed of Li2TiO3. In the present studies, an attempt has been made to develop a packed ...
The evaluation of the thermal conductivity of breeder materials is one of the main goals to find the...
The determination of the thermal conductivity of breeder materials is one of the main goals to find ...
The transfer of heat through the breeder region of a future fusion reactor is a key component of its...
Experiments were conducted to investigate the hydrodynamic behaviour of lithium titanate (Li2TiO3) i...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
Packed fluidization is a novel technique, in which small particles are allowed to fluidize in the in...
Lithium oxide (Li{sub 2}O) and lithium zirconate (Li{sub 2}ZrO{sub 3}) are promising ceramic breeder...
Lithium-based ceramic, Li2TiO3, is being considered as promising solid breeder materials in the trit...
The high anisotropy in the thermal conductivity of lithium metatitanate, Li2TiO3, is shown using the...
Recently, lithium titanate (Li2TiO3) has attracted the attention of many researchers. Small pebble-l...
For the development of TBM for fusion reactors, lithium containing ceramics as against the metal are...
Li2TiO3 ceramic is being considered as promising solid breeder materials in tritium breeding blanket...
The thermal properties of the lithium ceramics pebble beds have a significant impact on the temperat...
Lithium ceramic pebble beds are a proposed form for tritium breeding volumes in fusion reactors. In ...
Lithium titanate (Li2TiO3) has been prepared by heating the mixture of lithium carbonate powder and ...
The evaluation of the thermal conductivity of breeder materials is one of the main goals to find the...
The determination of the thermal conductivity of breeder materials is one of the main goals to find ...
The transfer of heat through the breeder region of a future fusion reactor is a key component of its...
Experiments were conducted to investigate the hydrodynamic behaviour of lithium titanate (Li2TiO3) i...
Lithium titanate is a promising solid breeder material for the fusion reactor blanket. Packed lithiu...
Packed fluidization is a novel technique, in which small particles are allowed to fluidize in the in...
Lithium oxide (Li{sub 2}O) and lithium zirconate (Li{sub 2}ZrO{sub 3}) are promising ceramic breeder...
Lithium-based ceramic, Li2TiO3, is being considered as promising solid breeder materials in the trit...
The high anisotropy in the thermal conductivity of lithium metatitanate, Li2TiO3, is shown using the...
Recently, lithium titanate (Li2TiO3) has attracted the attention of many researchers. Small pebble-l...
For the development of TBM for fusion reactors, lithium containing ceramics as against the metal are...
Li2TiO3 ceramic is being considered as promising solid breeder materials in tritium breeding blanket...
The thermal properties of the lithium ceramics pebble beds have a significant impact on the temperat...
Lithium ceramic pebble beds are a proposed form for tritium breeding volumes in fusion reactors. In ...
Lithium titanate (Li2TiO3) has been prepared by heating the mixture of lithium carbonate powder and ...
The evaluation of the thermal conductivity of breeder materials is one of the main goals to find the...
The determination of the thermal conductivity of breeder materials is one of the main goals to find ...
The transfer of heat through the breeder region of a future fusion reactor is a key component of its...