Since the entire Mirror Fusion Test Facility (MFTF-B) Magnet System was reconfigured from the original A-cell to an axicell design, much progress has been made on the design, fabrication, and installation planning. The axicell MFTF-B magnet array consists of a total of 26 large superconducting main coils. This paper provides an engineering overview of the progress of these coils. Recent studies on the effects of field errors on the plasma at the recircularizing region (transition coils) show that small field errors will generate large displacements of the field lines. These field errors might enhance radial electron heat transport and deteriorate the plasma confinement. Therefore, 16 superconducting trim coils have been designed to correct ...
The Mirror Fusion Test Facility (MFTF-B) now under construction at Lawrence Livermore National Labor...
The Large Hadron Collider (LHC) will be equipped with several thousands of superconducting corrector...
A test program to determine the effectiveness of various magnetic shielding designs for MFTF-B beaml...
The Axicell MFTF-B magnet system will provide the field environment necessary for tandem mirror plas...
The superconducting magnet system for the Mirror Fusion Test Facility (MFTF-B) consists of 24 magnet...
This report summarizes the designs and analyses produced by General Dynamics Convair for the four Ax...
This Final MFTF-B Manufacturing/Producibility Report covers facilities, tooling plan, manufacturing ...
This paper describes the construction and testing of the Mirror Fusion Test Facility superconducting...
This paper addresses the stability aspects of several successful dc superconducting magnets such as ...
This paper addresses the stability aspects of several successful dc superconducting magnets such as ...
This paper describes the cooldown and testing of the first yin-yang magnet for the Mirror Fusion Tes...
The mechanical response to winding and electromagnetic loads of the Mirror Fusion Test Facility (MFT...
Superconducting magnets for mirror fusion have evolved considerably since the Baseball II magnet in ...
Mirror experiments have led the way in applying superconductivity to fusion research because of uniq...
The MFTF-B transition coil and A-cell magnet designs use variations of the copper-stabilized NbTi co...
The Mirror Fusion Test Facility (MFTF-B) now under construction at Lawrence Livermore National Labor...
The Large Hadron Collider (LHC) will be equipped with several thousands of superconducting corrector...
A test program to determine the effectiveness of various magnetic shielding designs for MFTF-B beaml...
The Axicell MFTF-B magnet system will provide the field environment necessary for tandem mirror plas...
The superconducting magnet system for the Mirror Fusion Test Facility (MFTF-B) consists of 24 magnet...
This report summarizes the designs and analyses produced by General Dynamics Convair for the four Ax...
This Final MFTF-B Manufacturing/Producibility Report covers facilities, tooling plan, manufacturing ...
This paper describes the construction and testing of the Mirror Fusion Test Facility superconducting...
This paper addresses the stability aspects of several successful dc superconducting magnets such as ...
This paper addresses the stability aspects of several successful dc superconducting magnets such as ...
This paper describes the cooldown and testing of the first yin-yang magnet for the Mirror Fusion Tes...
The mechanical response to winding and electromagnetic loads of the Mirror Fusion Test Facility (MFT...
Superconducting magnets for mirror fusion have evolved considerably since the Baseball II magnet in ...
Mirror experiments have led the way in applying superconductivity to fusion research because of uniq...
The MFTF-B transition coil and A-cell magnet designs use variations of the copper-stabilized NbTi co...
The Mirror Fusion Test Facility (MFTF-B) now under construction at Lawrence Livermore National Labor...
The Large Hadron Collider (LHC) will be equipped with several thousands of superconducting corrector...
A test program to determine the effectiveness of various magnetic shielding designs for MFTF-B beaml...