Title :
Convergence Studies of Thermal and Electromagnetic Transient Quench Analysis of 11 GeV Super High Momentum Spectrometer Superconducting Magnets in Jefferson Lab
Author :
Sun, Eric ; Brindza, Paul ; Lassiter, Steven ; Fowler, Michael ; Xu, Edward
Author_Institution :
Thomas Jefferson Nat. Accel. Facility (Jefferson Lab.), Newport News, VA, USA
fDate :
6/1/2011 12:00:00 AM
Abstract :
This paper presents results of convergence studies of transient thermal and electromagnetic quench analysis of five Super High Momentum Spectrometer (SHMS) superconducting magnets: HB, Q1, Q2, Q3, and Dipole, using Vector Fields Quench analysis codes. The convergence of the hot spot temperature and solution solve times were used to investigate the effects of element types, mesh densities, and tolerance criteria. The comparisons between tetrahedral elements and hexahedral elements was studied, and their advantages and disadvantages were discussed. Based on the results of convergence studies, a meshing guideline for coils is presented. The impact of iteration tolerance to the hot spot temperature was also explored, and it is found that tight tolerances result in extremely long solve times with only marginal improvements in the results.
Keywords :
spectrometers; superconducting magnets; transient analysis; Dipole; HB; Jefferson Lab; Q1; Q2; Q3; electromagnetic transient quench analysis; electron volt energy 11 GeV; super high momentum spectrometer superconducting magnets; thermal transient quench analysis; vector fields quench analysis codes; Coils; Convergence; Copper; Resistors; Superconducting magnets; Thermal analysis; Thermal quenching; Convergence; quench analysis; spectrometer; superconducting magnet;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2010.2089487