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AbstractAbstract
[en] The low hybrid wave injection experiments, NBI and ICR heating experiments and reversed magnetic shear experiments in the HL-1M ohmic discharges are introduced. Significant progress on the plasma performance of HL-1M are presented. The extension of operation region, the internal confinement improvement and energy confinement improved by pellet injections and supersonic MBI are described
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China Nuclear Information Centre, Beijing (China); Southwestern Inst. of Physics, Chengdu (China); 118 p; ISBN 7-5022-2032-1; ; Oct 2000; p. 1-6; Available from China Nuclear Information Centre
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AbstractAbstract
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China Nuclear Information Centre, Beijing (China); Southwestern Inst. of Physics, Chengdu (China); 118 p; ISBN 7-5022-2032-1; ; Oct 2000; p. 29-30; Available from China Nuclear Information Centre
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AbstractAbstract
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China Nuclear Information Centre, Beijing (China); Southwestern Inst. of Physics, Chengdu (China); 118 p; ISBN 7-5022-2032-1; ; Oct 2000; p. 31-32; Available from China Nuclear Information Centre
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AbstractAbstract
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China Nuclear Information Center, Beijing (China); Southwestern Institute of Physics, Chengdu (China); 91 p; ISBN 7-5022-2032-1; ; Oct 1999; p. 16-17; 1 fig.
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Original Title
ICRF is stated for Ion Cyclotron Range of Frequencies
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Southwestern Inst. of Physics, Chengdu, SC (China); 58 p; 1997; p. 50-52; Available from China Nuclear Information Centre
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Miscellaneous
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Wang Zhiwen; Wang Enyao; Zhang Nianman; Wang Mingxu
Southwestern institute of physics annual report (1997)1997
Southwestern institute of physics annual report (1997)1997
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No abstract available
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Source
Southwestern Inst. of Physics, Chengdu, SC (China); 58 p; 1997; p. 12-14; Available from China Nuclear Information Centre
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Yan Longwen; Yang Shikun; Qian Jun; Wang Enyao
Southwestern Institute of Physics: Annual Report 19981999
Southwestern Institute of Physics: Annual Report 19981999
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No abstract available
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China Nuclear Information Center, Beijing (China); Southwestern Institute of Physics, Chengdu (China); 91 p; ISBN 7-5022-2032-1; ; Oct 1999; p. 18-20; 3 refs., 1 fig.
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AbstractAbstract
[en] The authors present experimental progress of the HL-1M tokamak made during 1998. Results include: density limits, neutral beam injection (NBI) heating, ion cyclotron resonance frequency (ICRF) heating, lower hybrid wave (LHW) ion heating, pellet injection and supersonic molecular beam injection (MBI) experiments
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Journal Article
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Nuclear Fusion and Plasma Physics; ISSN 0254-6086; ; v. 19(2); p. 116-119
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[en] Recently a new fuelling method with supersonic molecular beam injection (MBI) has bee developed and used in the tokamaks experiments successfully. It is economical to develop and maintain. The advantages of supersonic MBI compared with the conventional of gas-puffing method are as follows: deep deposition of fuel, better fuelling efficiency, reduced recycling and pure plasma. Particle and energy confinement can be improved and density limit extended. The review described the Laval nozzle molecular beam and a simple collective model for the injection of a supersonic MBI into the tokamak plasma
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Journal Article
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Plasma Science and Technology; ISSN 1009-0630; ; v. 3(2); p. 673-677
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AbstractAbstract
[en] The RF effects on probe measurements as well as methods for the interpretation of data are presented. A variety of techniques have been developed to extract data from probes in noisy environments. They can be divided into several categories, such as time averaged I-V scans, fast I-V scans, time sampled I-V scans, following techniques, filtering techniques and multi-probe techniques. Some of these techniques can be applied to beam probes and particle energy analyzers
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