Published 2004 | Version v1
Miscellaneous

Cable design for fast ramped superconducting magnets (Cos-θ design)

Description

The new heavy ion synchrotron facility proposed by GSI will have two superconducting magnet rings in the same tunnel, with rigidities of 300 T-m and 100 T-m. Fast ramp times are needed, which can cause significant problems for the magnets, particularly in the areas of ac loss and magnetic field distortion. The development of the low loss Rutherford cable that can be used is described, together with a novel insulation scheme designed to promote efficient cooling. Measurements of contact resistance in the cable are presented and the results of these measurements are used to predict the ac losses, in the magnets during fast ramp operation. For the high energy ring, a 1 m model dipole magnet was built, based on the RHIC dipole design. This magnet was tested under boiling liquid helium in a vertical cryostat. The quench current showed very little dependence on ramp rate. The ac losses, measured by an electrical method, were fitted to straight line plots of loss/cycle versus ramp rate, thereby separating the eddy current and hysteresis components. These results were compared with calculated values, using parameters which had previously been measured on short samples of cable. Reasonably good agreement between theory and experiment was found, although the measured hysteresis loss is higher than expected in ramps to the highest field levels. (author)

Part of:
Workshop on accelerator magnet superconductors. Proceedings

Additional details

Publishing Information

Imprint Title
Workshop on accelerator magnet superconductors. Proceedings
Imprint Pagination
352 p.
Journal Page Range
p. 201-214
Report number
INIS-FR--5606

Conference

Title
WAMS 2004 Workshop on accelerator magnet superconductors
Dates
22-24 Mar 2004
Place
Archamps (France)

Optional Information

Notes
15 refs.