Heat Diffusion in High-Cp Nb3Sn Composite Superconducting Wires

Author:

Barzi EmanuelaORCID,Berritta FabrizioORCID,Turrioni Daniele,Zlobin Alexander V.

Abstract

A major focus of Nb3Sn accelerator magnets is on significantly reducing or eliminating their training. Demonstration of an approach to increase the Cp of Nb3Sn magnets using new materials and technologies is very important both for particle accelerators and light sources. It would improve thermal stability and lead to much shorter magnet training, with substantial savings in machines’ commissioning costs. Both Hypertech and Bruker-OST have attempted to introduce high-Cp elements in their wire design. This paper includes a description of these advanced wires, the finite element model of their heat diffusion properties as compared with the standard wires, and whenever available, a comparison between the minimum quench energy (MQE) calculated by the model and actual MQE measurements on wires.

Funder

U.S. Department of Energy

Publisher

MDPI AG

Subject

Instrumentation

Reference25 articles.

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2. Nb3Sn Accelerator Magnets—Designs, Technologies, and Performance;Schoerling,2019

3. Progress on HL-LHC Nb3Sn Magnets

4. Development of Short-Period Nb3Sn Superconducting Planar Undulators

5. Development and First Test of the 15 T Nb3Sn Dipole Demonstrator MDPCT1

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