Electromagnetism

Case Studies in Superconducting Magnets: Design and by Yukikazu Iwasa

By Yukikazu Iwasa

Case experiences in Superconducting Magnets, moment Edition, is meant for graduate scholars in addition to specialist engineers, and covers the fundamental layout and operational problems with superconducting magnet expertise.

Based mostly on magnet tasks, mainly of high-field DC solenoidal magnets, on the Francis sour Magnet Laboratory on the Massachusetts Institute of expertise, this booklet covers very important and suitable subject matters on magnet layout and operation matters: box distribution, magnets, strength, thermal balance, dissipation, and protection.

Features of the recent variation include:

  • New magnet layout and operation concerns essentially of high-temperature superconducting (HTS) magnets;
  • Expanded insurance of box research, strength research, cryogenics, AC losses, protection;
  • Updated chapters all through to mirror contemporary advances and new advancements within the field;
  • New homework difficulties and discussions;
  • Fully up to date references.

Case experiences in Superconducting Magnets, moment Edition, serves as a major reference for magnet designers, skilled experts in addition to these simply beginning as execs and as scholars, within the fields of mechanical, electric, and cryogenic engineering.

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Extra info for Case Studies in Superconducting Magnets: Design and Operational Issues

Example text

20: Structural Materials for Cryogenics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2: Criterion for flux jumping . 3: Flux jumps . . . . 4: Wire twisting . . . . 5: Magnetization of conductors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .

4: Vapor-cooled HTS current lead 225 242 257 . . . . . . . . . . . . . . . . . xxx CONTENTS —Fully Superconducting Version (FSV) . 5: Vapor-cooled HTS current lead —Current-Sharing Version (CSV) . . 6: 6-kA vapor-cooled HTS current lead . . 6B: FSV, with parallel normal metal tapes . 6C: CSV, with parallel normal metal tapes . 6D: Copper section (∼80 K–300 K) . . . 7: Vapor-cooled brass current lead . . . . . . . 275 . . . . . . . . . . . . . . . .

1: Uniform-Current-Density Solenoids . . 2: “Bitter” Magnet . . . . . . 3: Load Lines . . . . . . . 4: Superposition Technique . . . . 5: Hybrid Magnet . . . . . . 6: “Double-Pancake” vs. “Layer-Wound” . 7: Field Analysis of Pancake-Coil Magnet . 8: Two-“Racetrack” Coil Magnet . . . 10: Scaling a Solenoidal Magnet . . . 11: Particle Accelerators . . . . . 12: Magnetic Force on an Iron Sphere . . 13: Radial Force in Two-Coil Magnet . . 14: Mechanical Support in the 45-T Hybrid .

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