3D Magnetic Analysis of the CMS Magnet
arXiv:1109.6586 · doi:10.1109/77.828264
Abstract
The CMS magnetic system consists of a super-conducting solenoid coil, 12.5 m long and 6 m free bore diameter, and of an iron flux-return yoke, which includes the central barrel, two end-caps and the ferromagnetic parts of the hadronic forward calorimeter. The magnetic flux density in the center of the solenoid is 4 T. To carry out the magnetic analysis of the CMS magnetic system, several 3D models were developed to perform magnetic field and force calculations using the Vector Fields code TOSCA. The analysis includes a study of the general field behavior, the calculation of the forces on the coil generated by small axial, radial displacements and angular tilts, the calculation of the forces on the ferromagnetic parts, the calculation of the fringe field outside the magnetic system, and a study of the field level in the chimneys for the current leads and the cryogenic lines. A procedure to reconstruct the field inside a cylindrical volume starting from the values of the magnetic flux density on the cylinder surface is considered. Special TOSCA-GEANT interface tools have being developed to input the calculated magnetic field into the detector simulation package.
4 pages, 6 figures, 1 equation, 14 references
Cited by in corpus (10)
- Measurement of the CMS Magnetic Field
- The CMS Magnetic Field Map Performance
- Developing the Technique of Measurements of Magnetic Field in the CMS Steel Yoke Elements With Flux-Loops and Hall Probes
- Analysis of Eddy Current Distributions in the CMS Magnet Yoke During the Solenoid Discharge
- Measuring the Magnetic Flux Density in the CMS Steel Yoke
- Design and Description of the CMS Magnetic System Model
- Validation of the CMS Magnetic Field Map
- Using the Standard Linear Ramps of the CMS Superconducting Magnet for Measuring the Magnetic Flux Density in the Steel Flux Return Yoke
- Flux Loop Measurements of the Magnetic Flux Density in the CMS Magnet Yoke
- Measuring the Magnetic Flux Density with Flux Loops and Hall Probes in the CMS Magnet Flux Return Yoke