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Electric power transmission; superconductivity; superconductive cables; superconductive FCL; fault current limiter; superconductive motor; superconductive transformer; subcooled LN2;
Cooling of Superconducting AC Power Cables; Electric power transmission; superconductivity; superconductive cables; superconductive FCL; fault current limiter; superconductive motor; superconductive transformer;
Cooling of Superconducting AC Power Cables; Electric power transmission; superconductivity; superconductive cables; superconductive FCL; fault current limiter; superconductive motor; superconductive transformer;

Electric power transmission

 

To transport electric power, HTS cables offer the benefit of being able to transport the same quantities of power within a much smaller cross-section of the conduit, while having additional benefits like a very small magnetic field.

HTS Cables are built as either AC or DC cables. AC Cables typically work at a temperature below of 77K by pumping through sub-cooled LN2.
DC Cables work around 30K and can thus not be cooled by LN2 as this will be solid at that temperature. Fluid of choice is pressurized helium gas that is circulated through the cable.

For both cable types Stirling Cryogenics has designed cooling systems concepts that can be built in different sizes to provide the required cooling power of a particular cable design.


Products

Cooling of Superconducting DC Power Cables
Cooling of Superconducting AC Power Cables

For more information contact us.

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