Abstract: To realize the high-Tc superconducting (HTS) DC cable system, it is important to study not only high current capacity and low loss of conductor but also optimum electrical insulation at cryogenic temperature. A model HTS DC cable system consists of a HTS conductor, semi-conductor, cooling system and insulating materials. Polypropylene laminated paper (PPLP) has been widely adopted as insulating material for HTS machines. However, the fundamental insulation characteristics of PPLP for the development of HTS DC cable have not been revealed satisfactorily until now. In this paper, we will discuss mainly on the breakdown characteristics of 3 sheets PPLP in liquid nitrogen (LN2). The characteristics of the diameter, location of butt-g...
High temperature superconducting devices utilize liquid nitrogen (LN2) both for cryogenic liquids an...
To realize a reliable and cost-effective application of high-temperature superconductive (HTS) equip...
AbstractThis paper describes the electrical insulation techniques at cryogenic temperatures, i.e. Cr...
AbstractIn order to develop high temperature superconducting (HTS) DC cable, it is important to unde...
It has been reported that the insulation design under DC stress is considered as one of the critical...
Due to ac loss in superconducting materials, high cryogenic costs are inevitable when superconductin...
With the rapid development of world economics, demand for electricity in metropolitan areas has incr...
The externally applied electric field causing sudden increase in electrical conductivity is called t...
Due to the existence of AC loss in superconducting materials when an alternating voltage is applied,...
Polypropylene laminated paper (PPLP), which is used as the main insulation material of the stop join...
High temperature superconducting (HTS) cable has been paid much attention due to its high efficiency...
One of the key components for dc HTS cable for long-distance line is a stop joint box (SJB). Up to n...
As polypropylene laminated paper (PPLP) is usually wound around the high-voltage conductor of a dc h...
Since the discovery of high-temperature superconductor (HTS), liquid nitrogen(LN2) has not been only...
Space charge is a major issue that hinders the development of HVDC polymeric cables. On the other ha...
High temperature superconducting devices utilize liquid nitrogen (LN2) both for cryogenic liquids an...
To realize a reliable and cost-effective application of high-temperature superconductive (HTS) equip...
AbstractThis paper describes the electrical insulation techniques at cryogenic temperatures, i.e. Cr...
AbstractIn order to develop high temperature superconducting (HTS) DC cable, it is important to unde...
It has been reported that the insulation design under DC stress is considered as one of the critical...
Due to ac loss in superconducting materials, high cryogenic costs are inevitable when superconductin...
With the rapid development of world economics, demand for electricity in metropolitan areas has incr...
The externally applied electric field causing sudden increase in electrical conductivity is called t...
Due to the existence of AC loss in superconducting materials when an alternating voltage is applied,...
Polypropylene laminated paper (PPLP), which is used as the main insulation material of the stop join...
High temperature superconducting (HTS) cable has been paid much attention due to its high efficiency...
One of the key components for dc HTS cable for long-distance line is a stop joint box (SJB). Up to n...
As polypropylene laminated paper (PPLP) is usually wound around the high-voltage conductor of a dc h...
Since the discovery of high-temperature superconductor (HTS), liquid nitrogen(LN2) has not been only...
Space charge is a major issue that hinders the development of HVDC polymeric cables. On the other ha...
High temperature superconducting devices utilize liquid nitrogen (LN2) both for cryogenic liquids an...
To realize a reliable and cost-effective application of high-temperature superconductive (HTS) equip...
AbstractThis paper describes the electrical insulation techniques at cryogenic temperatures, i.e. Cr...