DocumentCode :
857153
Title :
Parametric effects on the transient Voltage performance of a DC superconducting cable
Author :
Pallem, Chandralekha ; Chowdhuri, Pritindra ; Demko, Jonathan A. ; Gouge, Michael J.
Author_Institution :
Tennessee Technol. Univ., Cookeville, TN
Volume :
16
Issue :
1
fYear :
2006
fDate :
3/1/2006 12:00:00 AM
Firstpage :
31
Lastpage :
37
Abstract :
The objective of this work was to determine the significant parameters of a 3-GW 200-kV dc superconducting cable system which influence the transient voltage distribution in the various parts of the cable. The cable system consists of four coaxial metallic cylinders. It was found that the dielectric constant and the electrical resistivity of the soil significantly affect the severity of the transient voltages; lower dielectric constant and higher resistivity of the soil will increase the magnitudes of the transient voltages by increasing the earth-return impedance. It was also found that the effect of the conductor internal impedances of the cable is insignificant. Shorting the coaxial cylinders of the cryogen flow and the cryostat will lessen the severity of the transient voltages. Grounding the second, third, and fourth cylinders at regular intervals with low-impedance grounding impedance will also improve the transient performance of the cable. More research is needed to evaluate these procedures
Keywords :
cryostats; electric impedance; electrical resistivity; high-temperature superconductors; permittivity; superconducting cables; transients; 200 kV; 3 GW; DC superconducting cable; coaxial metallic cylinders; conductor internal impedances; cryogen flow; cryostat; dielectric constant; earth-return impedance; electrical resistivity; low-impedance grounding impedance; parametric effects; severity; soil; transient voltage performance; Coaxial cables; Dielectric constant; Electric resistance; Grounding; High-K gate dielectrics; Impedance; Power cables; Soil; Superconducting cables; Voltage; DC superconducting cable; transient voltages;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.863519
Filename :
1603606
Link To Document :
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