AbstractThe fourth cooling test of the superconducting DC power transmission system of Chubu University was conducted in August of 2011. The heat leak from the cryogenic pipe and the eect of reducing the outer pipe temperature were tested. The heat leak from the cryogenic pipe was improved relative to that recorded during the second cooling test performedintheprevious summer,a season similartothatin whichthe fourth cooling testwas conducted.Asignificant reduction of the outer pipe temperature was achieved by an infrared reflective coating, and a reduction of the heat leak was observed
The hot temperature super conducting cables (HTS cable) are cooled by the liquid nitrogen and the su...
AbstractJapanese national project, called “Materials & Power applications of Coated Conductors (M-PA...
AbstractReduction of heat penetrating into the cryogenic region is the important method of optimizat...
AbstractThe third cooling test of the 200 m superconducting DC power transmission system at Chubu Un...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
AbstractAfter we constructed the 200-meter superconducting DC power cable in spring of 2010, three e...
AbstractIt is traditionally considered that superconducting technology is just the way that will hel...
AbstractIshikari project constructs two lines. The length of the Line 1 is 500 m, and connects the p...
AbstractGlobal energy problems should be solved quickly, and superconducting applications are highly...
Supported by a grant from the MIT Energy Initiative In this and its accompanying reports, the topolo...
The design of a test facility for superconducting power transmission cables is described. The cryoge...
Superconductivity can solve the energy problems in the world as energy saving technologies. Among th...
The hot temperature super conducting cable (HTS cable) cooled by the liquid nitrogen has many merits...
AbstractIn accordance with the conventional design of superconducting power transmission (SC PT) lin...
High-temperature superconducting (HTS) cable systems for power transmission are under development th...
The hot temperature super conducting cables (HTS cable) are cooled by the liquid nitrogen and the su...
AbstractJapanese national project, called “Materials & Power applications of Coated Conductors (M-PA...
AbstractReduction of heat penetrating into the cryogenic region is the important method of optimizat...
AbstractThe third cooling test of the 200 m superconducting DC power transmission system at Chubu Un...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
AbstractAfter we constructed the 200-meter superconducting DC power cable in spring of 2010, three e...
AbstractIt is traditionally considered that superconducting technology is just the way that will hel...
AbstractIshikari project constructs two lines. The length of the Line 1 is 500 m, and connects the p...
AbstractGlobal energy problems should be solved quickly, and superconducting applications are highly...
Supported by a grant from the MIT Energy Initiative In this and its accompanying reports, the topolo...
The design of a test facility for superconducting power transmission cables is described. The cryoge...
Superconductivity can solve the energy problems in the world as energy saving technologies. Among th...
The hot temperature super conducting cable (HTS cable) cooled by the liquid nitrogen has many merits...
AbstractIn accordance with the conventional design of superconducting power transmission (SC PT) lin...
High-temperature superconducting (HTS) cable systems for power transmission are under development th...
The hot temperature super conducting cables (HTS cable) are cooled by the liquid nitrogen and the su...
AbstractJapanese national project, called “Materials & Power applications of Coated Conductors (M-PA...
AbstractReduction of heat penetrating into the cryogenic region is the important method of optimizat...