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  • 1
    Publication Date: 2011-08-11
    Description: Superconducting magnet with coils in variable- spacing horizontal-axis split pair configuration for plasma physics studies
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
    Type: REVIEW OF SCIENTIFIC INSTRUMENTS
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  • 2
    Publication Date: 2019-01-25
    Description: Split pair of superconducting magnetic field coils of zirconium alloy wire for plasma physics research
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
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  • 3
    Publication Date: 2019-07-13
    Description: The bumpy torus facility consists of 12 superconducting coils, each 19 cm i.d. and capable of 3.0 teslas on their axes. The coils are equally spaced around a toroidal array with a major diameter of 1.52 m, and are mounted with the major axis of the torus vertical in a single vacuum tank 2.6 m in diameter. Final shakedown tests of the facility mapped out its magnetic, cryogenic, vacuum, mechanical, and electrical performance. The facility is now ready for use as a plasma physics research facility. A maximum magnetic field on the magnetic axis of 3.23 teslas was held for a period of more than sixty minutes without a coil normalcy. The design field was 3.00 teslas. The steady-state liquid helium boil-off rate was 87 liters per hour of liquid helium without the coils charged. The coil array was stable when subjected to an impulsive loading, even with the magnets fully charged. When the coils were charged to a maximum magnetic field of 3.35 teslas, the system was driven normal without damage.
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
    Type: NASA-TM-X-68165 , E-7225 , Tex. Symp. on the Technol. of Controlled Thermonucl. Fusion Expt. and the Eng. Aspects of Fusion Reactors; Nov 20, 1972 - Nov 22, 1972; Austin, TX; United States
    Format: application/pdf
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  • 4
    Publication Date: 2019-07-13
    Description: The NASA-Lewis 'bumpy torus' facility consists of 12 superconducting coils, each 19 cm ID and capable of 3.0 tesla on their axes. The coils are equally spaced around a toroidal array with a major diameter of 1.52 m, and are mounted with the major axis of the torus vertical in a single vacuum tank 2.6 m in diameter. Final shakedown tests of the facility mapped out its magnetic, cryogenic, vacuum, mechanical, and electrical performance. The facility is now ready for use as a plasma physics research facility. A maximum magnetic field on the magnetic axis of 3.23 teslas has been held for a period of more than sixty minutes without a coil normalcy.
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
    Type: Symposium on the Technology of Controlled Thermonuclear Fusion Experiments and the Engineering Aspects of Fusion Reactors; Nov 20, 1972 - Nov 22, 1972; Austin, TX
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  • 5
    Publication Date: 2019-07-13
    Description: The distribution function of ion energy parallel to the magnetic field of a modified Penning discharge has been measured with a retarding potential energy analyzer. These ions escaped through one of the throats of the magnetic mirror geometry. Simultaneous measurements of the ion energy distribution function perpendicular to the magnetic field have been made with a charge-exchange neutral detector. The ion energy distribution functions are approximately Maxwellian, and the parallel and perpendicular kinetic temperatures are equal within experimental error. These results suggest that turbulent processes previously observed in this discharge Maxwellianize the velocity distribution along a radius in velocity space, and result in an isotropic energy distribution.
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
    Type: Annual Meeting of the American Physical Society; Nov 13, 1972 - Nov 16, 1972; Monterey, CA
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  • 6
    Publication Date: 2019-07-13
    Description: A retrospective summary is presented of the performance of the two-coil superconducting pilot rig which preceded the NASA Lewis bumpy torus. The NASA Lewis bumpy torus facility consists of 12 superconducting coils, each with a 19 cm i.d. and capable of producing magnetic field strengths of 3.0 teslas on their axes. The magnets are equally spaced around a major circumference 1.52 m in diameter, and are mounted with the major axis of the torus vertical in a single vacuum tank 2.59 m in diameter. The design value of maximum magnetic field on the magnetic axis (3.0 T) has been reached and exceeded.
    Keywords: FACILITIES, RESEARCH, AND SUPPORT
    Type: Applied Superconductivity Conference; May 01, 1972 - May 03, 1972; Annapolis, MD
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