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A Low Loss, Fast Ramp HTS Solenoid Prototype for Compact Spherical Tokamaks

  • Yuhu Zhai
  • , Jonathan Menard
  • , Jonathan Dye
  • , Stephen Gourlay
  • , Ian Pong
  • , Soren Prestemon
  • , Yibing Huang
  • , Lawrence Masur
  • , Jeff Parrell
  • , Shaon Barua
  • , Daniel Davis
  • , Youngjae Kim
  • , Eric Hellstrom
  • , David Larbalestier

Research output: Contribution to journalArticlepeer-review

Abstract

To explore AC loss characteristics of commercial Bi-2212 conductors made in the USA, a small ohmic heating (OH) prototype coil is being developed for compact tokamaks using high performance Bi-2212 wires newly manufactured by Bruker EST. The goal is to build and test Bi-2212 prototype coils for fast ramp central solenoid (CS) operation of spherical tokamaks (ST). For a ST pilot plant, one of the key challenges is the tight space available for CS in a center column where in-board legs of the toroidal field (TF) and OH coils are assembled into a cryostat with a few millimeters clearance. A high current density Rutherford cable consisting of 17 legacy Bi-2212 wires, a contribution of the US Magnet Development Program (MDP), was fabricated at the Lawrence Berkeley National Laboratory (LBNL) for the development of fast ramp CS magnets in the ST Advanced Reactor (STAR) designed by PPPL. Characterization of the new and legacy HTS wires is presented, along with the coil design wound directly with new wire, and a Rutherford cable-wound solenoid using the legacy wire. A comparison of AC losses is made based on expected performance for a fast ramp ST operation. The HTS cable and cabled coil fabrication issues such as the heat treatment, coil mandrel design, assembly and 2212 quench characteristics are discussed, along with a test plan for CS design validation.

Original languageEnglish (US)
Article number4202105
JournalIEEE Transactions on Applied Superconductivity
Volume36
Issue number3
DOIs
StatePublished - 2026

All Science Journal Classification (ASJC) codes

  • Electronic, Optical and Magnetic Materials
  • Condensed Matter Physics
  • Electrical and Electronic Engineering

Keywords

  • AC losses
  • Bi-2212 high temperature superconductors
  • compact tokamaks
  • fast ramp solenoids
  • fusion magnet

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