Published March 21, 2000 | Version v1
Report

Bent Solenoids with Superimposed Dipole Fields

Description

A conceptual design and manufacturing technique were developed for a superconducting bent solenoid magnet with a superimposed dipole field that would be used as a dispersion device in the cooling channel of a future Muon Collider. The considered bent solenoid is equivalent to a 180? section of a toroid with a major radius of ∼610 mm and a coil aperture of ∼416 mm. The required field components of this magnet are 4 tesla for the solenoid field and 1 tesla for the superimposed dipole field. A magnet of this size and shape, operating at these field levels, has to sustain large Lorentz forces resulting in a maximum magnetic pressure of about 2,000 psi. A flexible round mini-cable with 37 strands of Cu-NbTi was selected as the superconductor. Detailed magnetic analysis showed that it is possible to obtain the required superimposed dipole field by tilting the winding planes of the solenoid by ∼25?. A complete structural analysis of the coil support system and the helium containment vessel under thermal, pressure, and Lorentz force loads was carried out using 3D finite element models of the structures. The main technical issues were studied and solutions were worked out so that a highly reliable magnet of this type can be produced at an affordable cost

Availability note (English)

Available from OSTI as DE00882407; PURL: https://www.osti.gov/servlets/purl/882407-Juiwti/

Additional details

Publishing Information

Imprint Pagination
vp.
Report number
DOE-ER--82730-1

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
39004786
Subject category
S43: PARTICLE ACCELERATORS;
Resource subtype / Literary indicator
Non-conventional Literature
Descriptors DEI
ACCELERATORS; APERTURES; CONTAINMENT; DESIGN; HELIUM; LORENTZ FORCE; MANUFACTURING; MUONS; SHAPE; SOLENOIDS; SUPERCONDUCTING MAGNETS
Descriptors DEC
ELECTRIC COILS; ELECTRICAL EQUIPMENT; ELECTROMAGNETS; ELEMENTARY PARTICLES; ELEMENTS; EQUIPMENT; FERMIONS; FLUIDS; GASES; LEPTONS; MAGNETS; NONMETALS; OPENINGS; RARE GASES; SUPERCONDUCTING DEVICES

Optional Information

Contract/Grant/Project number
FG02-99ER82730
Notes
doi 10.2172/882407
Funding organization
USDOE - Office of Energy Research ER (United States); US - Atomic Energy Commission (United States)