Results 181 to 190 of about 29,659 (207)
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Fusion Science and Technology, 2010
AbstractThis paper describes present status of magnetic measurements in the Large Helical Device (LHD).
S. Sakakibara, H. Yamada
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AbstractThis paper describes present status of magnetic measurements in the Large Helical Device (LHD).
S. Sakakibara, H. Yamada
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Proceedings of 16th International Symposium on Fusion Engineering, 2002
The Large Helical Device (LHD) is a big non-tokamak type superconducting toroidal fusion apparatus, which is an on-going project under construction being completed in 1997. Based on the results of the developments in both areas of the physics and technology researches concerned, the LHD project is expected to contribute to the necessary understandings ...
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The Large Helical Device (LHD) is a big non-tokamak type superconducting toroidal fusion apparatus, which is an on-going project under construction being completed in 1997. Based on the results of the developments in both areas of the physics and technology researches concerned, the LHD project is expected to contribute to the necessary understandings ...
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Fusion Science and Technology, 2010
A global particle balance study has been investigated in the Large Helical Device (LHD) in which the first wall and the divertor tiles are made of stainless steel (SUS-316L) and carbon, respectivel...
S. Masuzaki +14 more
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A global particle balance study has been investigated in the Large Helical Device (LHD) in which the first wall and the divertor tiles are made of stainless steel (SUS-316L) and carbon, respectivel...
S. Masuzaki +14 more
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Fusion Science and Technology, 2010
Bolometers are a powerful tool for diagnosing plasma radiation in a reactor-relevant environment.
B. J. Peterson +5 more
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Bolometers are a powerful tool for diagnosing plasma radiation in a reactor-relevant environment.
B. J. Peterson +5 more
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Fusion Science and Technology, 2010
Wall conditioning in the Large Helical Device (LHD) has been conducted successively since the first experimental campaign in 1998.
S. Masuzaki +12 more
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Wall conditioning in the Large Helical Device (LHD) has been conducted successively since the first experimental campaign in 1998.
S. Masuzaki +12 more
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1996
The main research activity in the National Institute for Fusion Science (NIFS), Japan, is directed towards the study on plasma confinement and heating in a helical system, as a complementary approach of tokamak research to the comprehensive understanding of magnetically confined toroidal plasmas.
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The main research activity in the National Institute for Fusion Science (NIFS), Japan, is directed towards the study on plasma confinement and heating in a helical system, as a complementary approach of tokamak research to the comprehensive understanding of magnetically confined toroidal plasmas.
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LHD divertor experimental program
Journal of Nuclear Materials, 1999The LHD experiment has just begun. A scenario is presented for LHD divertor experiments. It includes development of LHD divertor components particularly efficient pumping system, local island divertor as a closed pumped divertor, simultaneous achievement of H-mode and radiative cooling (SHC operation) as an H-mode approach in the helical device, high ...
N Ohyabu +17 more
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3D Search Based Hybrid Optimal Trajectory Planning for Autonomous LHD in Turning Maneuvers
IEEE Transactions on Intelligent Transportation Systems, 2022Qing Gu, Guoxing Bai, Guodong Wang
exaly

