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Observation of Central Toroidal Rotation Induced by ICRF on EAST

Observation of Central Toroidal Rotation Induced by ICRF on EAST
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摘要 Core plasma rotation of both L-mode and H-mode discharges with ion cyclotron range of frequency(ICRF) minority heating(MH) scheme was measured with a tangential X-ray imaging crystal spectrometer on EAST(Experimental Advanced Superconducting Tokamak).Cocurrent central impurity toroidal rotation change was observed in ICRF-heated L-and H-mode plasmas.Rotation increment as high as 30 km/s was generated at ~1.7 MW ICRF power.Scaling results showed similar trend as the Rice scaling but with significant scattering,especially in L-mode plasmas.We varied the plasma current,toroidal field and magnetic configuration individually to study their effect on L-mode plasma rotation,while keeping the other major plasma parameters and heating unchanged during the scanning.It was found that larger plasma current could induce plasma rotation more efficiently.A scan of the toroidal magnetic field indicated that the largest rotation was obtained for on-axis ICRF heating.A comparison between lower-single-null(LSN)and double-null(DN) configurations showed that LSN discharges rendered a larger rotation change for the same power input and plasma parameters. Core plasma rotation of both L-mode and H-mode discharges with ion cyclotron range of frequency(ICRF) minority heating(MH) scheme was measured with a tangential X-ray imaging crystal spectrometer on EAST(Experimental Advanced Superconducting Tokamak).Cocurrent central impurity toroidal rotation change was observed in ICRF-heated L-and H-mode plasmas.Rotation increment as high as 30 km/s was generated at ~1.7 MW ICRF power.Scaling results showed similar trend as the Rice scaling but with significant scattering,especially in L-mode plasmas.We varied the plasma current,toroidal field and magnetic configuration individually to study their effect on L-mode plasma rotation,while keeping the other major plasma parameters and heating unchanged during the scanning.It was found that larger plasma current could induce plasma rotation more efficiently.A scan of the toroidal magnetic field indicated that the largest rotation was obtained for on-axis ICRF heating.A comparison between lower-single-null(LSN)and double-null(DN) configurations showed that LSN discharges rendered a larger rotation change for the same power input and plasma parameters.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第2期114-119,共6页 等离子体科学和技术(英文版)
基金 supported by the National Magnetic Confinement Fusion Science Program of China(Nos.2013GB112004 and 2015GB103002) National Natural Science Foundation of China(Nos.11175208,11305212,11375235,11405212 and 11261140328) the Innovative Program of Development Foundation of Hefei Center for Physical Science and Technology(2014FXCX003) Brain Korea 21 Program for Leading Universities&Students(BK21 PLUS)
关键词 central toroidal rotation ICRF flow drive minority heating X-ray imaging crystal spectrometer central toroidal rotation ICRF flow drive minority heating X-ray imaging crystal spectrometer
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参考文献27

  • 1Shaing K C, Crume E C. 1989, Phys. Rev. Lett., 63: 2369.
  • 2Groebner R J, Burrell K H, Seraydarian R P. 1990, Phys. Rev. Lett., 64:3015.
  • 3Ida K, Hidekuma S, Miura Y, et al. 1990, Phys. Rev. Lett., 65:1364.
  • 4Wolf R C. 2003, Plasma Phys. Control. Fusion, 45:R1.
  • 5Bondeson A, Ward D J. 1994, Phys. Rev. Lett., 72: 2709.
  • 6Betti R, Freidberg J P. 1995, Phys. Rev. Lett., 74: 2949.
  • 7Strait E J, Taylor T S, Turnbull A D, et al. 1995, Phys. Rev. Lett., 74:2483.
  • 8Hahm T S, Burrell K H. 1995, Phys. Plasmas, 2:1648.
  • 9Burrell K H. 1997, Phys. Plasmas, 4:1499.
  • 10Hsuan H, Bitter M, Phillips C K, et al. 1995, ICH- induced plasma rotation on TFTR. llth Topical Con- ference on RF Power in Plasmas, Palm Springs, CA, USA.

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