Search Results - "Lang, D.D."
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The configuration development of the superconducting magnets for the SSAT-S tokamak device
Published in IEEE transactions on applied superconductivity (01-03-1993)“…The Steady State Advanced Tokamak (SSAT) device will be developed to demonstrate steady-state tokamak operations and optimize plasma conditions in a…”
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Large, all‐metal‐sealed, vacuum gate valve for fusion application
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-11-1992)“…Two large (30 cm and 1 m in diameter), innovative, fusion‐reactor‐compatible, vacuum gate valves have been developed which should contribute significantly to…”
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Superconducting magnet system for the TPX Tokamak
Published in IEEE transactions on magnetics (01-07-1994)“…The Tokamak Physics Experiment (TPX) will be the first Tokamak using superconducting magnets for both the poloidal and toroidal field. It is designed for…”
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Journal Article Conference Proceeding -
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The TPX magnet R&D program
Published in 15th IEEE/NPSS Symposium. Fusion Engineering (1993)“…A unique feature of the magnet system for the Tokamak Physics Experiment (TPX) is that all the magnets are superconducting. With the exception of the outer…”
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Overview of the Microwave Tokamak Experiment operation and developments
Published in [Proceedings] The 14th IEEE/NPSS Symposium Fusion Engineering (1991)“…The Microwave Tokamak Experiment (MTX) is being operated to demonstrate the feasibility of using intense microwave pulses (up to 6 GW peak power) from a free…”
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Microwave Tokamak Experiment: an overview of the construction and checkout phase
Published in IEEE Thirteenth Symposium on Fusion Engineering (1989)“…The Microwave Tokamak Experiment (MTX) demonstrates the feasibility of using microwave pulses produced from a free electron laser (FEL) to provide electron…”
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Gas pressure in the end plug regions of the TMX‐U thermal barrier experiment
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-10-1984)“…We consider briefly the upper bound on background pressure (0.5 to 1.0×10− 6 Torr) that is required for operation of the thermal barrier end plugs of TMX‐U and…”
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Two-gigawatt burst-mode operation of the intense microwave prototype (IMP) free-electron laser (FEL) for the microwave tokamak experiment (MTX)
Published in 15th IEEE/NPSS Symposium. Fusion Engineering (1993)“…The MTX explored the plasma heating effects of 140 GHz microwaves from both Gyrotrons and from the IMP FEL wiggler. The Gyrotron was long pulse length (0.5…”
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Conference Proceeding