AbstractThe third cooling test of the 200 m superconducting DC power transmission system at Chubu University (CASER2) has been conducted from January to March 2011. During this term, the cooling of the system and the test of the liquid nitrogen circulation were performed. The temperature variation of the liquid nitrogen along the cryogenic pipe was measured and the heat leak from the surroundings at room temperature to the liquid nitrogen was estimated. The heat leakwas about275Wfor175mofthe cryogenicpipe, whichwas55%ofthevalue obtained duringthe first cooling test. Further improvement will be continued to reduce the heat leak of CASER2
The heatmeter or more precisely the heatflowmeter is a device based on thermal conductivity measurin...
  High temperature (below liquid nitrogen boiling temps.) superconductors have potential applicati...
The hot temperature super conducting cable (HTS cable) cooled by the liquid nitrogen has many merits...
AbstractThe third cooling test of the 200 m superconducting DC power transmission system at Chubu Un...
AbstractThe fourth cooling test of the superconducting DC power transmission system of Chubu Univers...
AbstractAfter we constructed the 200-meter superconducting DC power cable in spring of 2010, three e...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
AbstractGlobal energy problems should be solved quickly, and superconducting applications are highly...
AbstractIt is traditionally considered that superconducting technology is just the way that will hel...
AbstractIn accordance with the conventional design of superconducting power transmission (SC PT) lin...
HTS power cables or high current bus bar systems can be cooled by circulating subcooled liquid nitro...
AbstractReduction of heat penetrating into the cryogenic region is the important method of optimizat...
AbstractIshikari project constructs two lines. The length of the Line 1 is 500 m, and connects the p...
AbstractJapanese national project, called “Materials & Power applications of Coated Conductors (M-PA...
The combination of dry superconducting magnet using cryocooler as a cold source is becoming a standa...
The heatmeter or more precisely the heatflowmeter is a device based on thermal conductivity measurin...
  High temperature (below liquid nitrogen boiling temps.) superconductors have potential applicati...
The hot temperature super conducting cable (HTS cable) cooled by the liquid nitrogen has many merits...
AbstractThe third cooling test of the 200 m superconducting DC power transmission system at Chubu Un...
AbstractThe fourth cooling test of the superconducting DC power transmission system of Chubu Univers...
AbstractAfter we constructed the 200-meter superconducting DC power cable in spring of 2010, three e...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
AbstractGlobal energy problems should be solved quickly, and superconducting applications are highly...
AbstractIt is traditionally considered that superconducting technology is just the way that will hel...
AbstractIn accordance with the conventional design of superconducting power transmission (SC PT) lin...
HTS power cables or high current bus bar systems can be cooled by circulating subcooled liquid nitro...
AbstractReduction of heat penetrating into the cryogenic region is the important method of optimizat...
AbstractIshikari project constructs two lines. The length of the Line 1 is 500 m, and connects the p...
AbstractJapanese national project, called “Materials & Power applications of Coated Conductors (M-PA...
The combination of dry superconducting magnet using cryocooler as a cold source is becoming a standa...
The heatmeter or more precisely the heatflowmeter is a device based on thermal conductivity measurin...
  High temperature (below liquid nitrogen boiling temps.) superconductors have potential applicati...
The hot temperature super conducting cable (HTS cable) cooled by the liquid nitrogen has many merits...