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Experimental Results of Various Optical Fibers Encapsulated HTS Tapes Under Impulse Currents for the SFCL Application

IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY(2020)

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摘要
In high temperature superconducting (HTS) applications, effective and fast quench detection techniques are quite essential. Recently, an attractive combination of distributed optical fiber sensor and optical fiber encapsulated HTS tape (OF-tape) is suggested for quench detection. Before OF-tapes are applied in actual applications, their performance should be tested previously. In this paper, three types of OF-tapes, whose optical fiber diameters are 95, 170, and 250 & x03BC;m, respectively, were prepared for our superconducting fault current limiter (SFCL) project, and these tapes are named tape-95, tape-170, and tape-250 in sequence. The SFCL requirements show that for the used HTS tapes, the critical current, the room temperature resistance, and the bearable AC impulse current must be within 500 & x00A0;& x00B1;& x00A0;10 & x0025; A, 60 m & x03A9;& x002F;m, and 1500 & x00A0;A & x002F;100 ms, respectively. The test results indicate that the critical currents of tape-95, tape-170, and tape-250 are approximately 500 & x00A0;A, and the room temperature resistances of these tapes are 70, 65, and 57 m & x03A9;& x002F;m, respectively. Moreover, the AC 1500 A & x002F;100 ms short circuit current will not damage these tapes seriously. According to the SFCL project requirements and these test results, tape-170 will be used in limiter coils.
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关键词
High-temperature superconductors,Temperature measurement,Critical current density (superconductivity),Resistance,Lamination,Steel,Current measurement,Critical current,impulse current,optical fiber encapsulated HTS tapes,resistance,fault current limiter
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