NORMAL ZONE PROPAGATION IN ADIABATIC SUPERCONDUCTING MAGNETS OVER THE TEMPERATURE-RANGE 4.2-80-K

被引:17
|
作者
IWASA, Y
BUTT, YM
机构
[1] Francis Bitter National Magnet Laboratory, Massachusetts Institute of Technology, Cambridge
关键词
critical temperatures; normal zone propagation; superconducting magnets;
D O I
10.1016/0011-2275(90)90111-O
中图分类号
O414.1 [热力学];
学科分类号
摘要
A theoretical analysis of operating temperature dependent normal zone propagation (NZP) has been performed in an adiabatic superconducting magnet over the temperature range 4.2-80 K. Because of the inverse dependence of NZP velocity on winding heat capacity, which increases sharply with temperature, above ≈ 20 K the normal zone hardly grows beyond its initial size and the hot spot temperature reaches well above 300 K. A computer simulation of NZP was applied to a small, two-coil solenoid system that was assumed to operate at any temperature between 4.2 and 80 K. The results corroborate the conclusion of the analysis: that the solenoid system is self-protecting for operating temperatures up to ≈ 20 K. This 'operational critical temperature' up to which an adiabatic magnet is self-protecting depends also on matrix current density and magnet size. © 1990.
引用
收藏
页码:37 / 40
页数:4
相关论文
共 50 条
  • [1] NORMAL ZONE PROPAGATION IN ADIABATIC SUPERCONDUCTING MAGNETS .1. NORMAL ZONE PROPAGATION VELOCITY IN SUPERCONDUCTING COMPOSITES
    ZHAO, ZP
    IWASA, Y
    CRYOGENICS, 1991, 31 (09) : 817 - 825
  • [2] MAGNETORESISTIVITY OF SILVER OVER TEMPERATURE-RANGE 4.2-K159-K
    IWASA, Y
    MCNIFF, EJ
    BELLIS, RH
    SATO, K
    CRYOGENICS, 1993, 33 (08) : 836 - 837
  • [3] A MICROCOMPUTER-CONTROLLED VACUUM ADIABATIC CALORIMETER FOR THE TEMPERATURE-RANGE 4.2-K-300-K
    RAMAN, S
    MURTY, NSN
    ROY, KS
    RAO, VV
    RANGARAJAN, G
    PRAMANA, 1982, 19 (02) : 151 - 157
  • [4] MICRO YIELDING AND MACROYIELDING OF POLYCRYSTALLINE NIOBIUM IN THE TEMPERATURE-RANGE 4.2-80 K
    GINDIN, IA
    CHIRKINA, LA
    OKOVIT, VS
    KHINKIS, BA
    PHYSICS OF METALS, 1985, 6 (04): : 789 - 794
  • [5] HEAT-CONDUCTIVITY MEASUREMENT AT V3SI IN TEMPERATURE-RANGE 4.2 TO 80 K
    HEGENBARTH, E
    SCHMIDT, B
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 1976, 76 (01): : 307 - 311
  • [6] THERMAL-CONDUCTIVITY OF ZINC SELENIDE OVER THE TEMPERATURE-RANGE 4.2 TO 300-K
    SIROTA, NN
    PETROVA, ZK
    SOKOLOVSKY, TD
    DOKLADY AKADEMII NAUK BELARUSI, 1980, 24 (03): : 214 - 217
  • [7] STRESS RELAXATION IN COPPER IN TEMPERATURE-RANGE OF 4.2 - 300 DEGREES K
    DOTSENKO, VI
    LANDAU, AI
    MATERIALS SCIENCE AND ENGINEERING, 1976, 22 (02): : 101 - 108
  • [8] FLUORESCENCE OF SOLID TETRACENE IN TEMPERATURE-RANGE 4.2 TO 300-K
    MULLER, H
    BASSLER, H
    CHEMICAL PHYSICS LETTERS, 1975, 36 (03) : 312 - 315
  • [9] STREAMER DISCHARGES IN SEMICONDUCTORS IN THE TEMPERATURE-RANGE 4.2-530-K
    ZUBRITSKII, VV
    YABLONSKII, GP
    GRIBKOVSKII, VP
    SOVIET PHYSICS SEMICONDUCTORS-USSR, 1983, 17 (03): : 250 - 253
  • [10] INSTRUMENTATION FOR MEASURING MAGNETIC TRANSITIONS IN TEMPERATURE-RANGE 4.2-300 K
    ROTHWARF, F
    FORD, D
    DUBECK, LW
    REVIEW OF SCIENTIFIC INSTRUMENTS, 1972, 43 (02): : 317 - &