Parallel transport modeling of linear divertor simulators with fundamental ion cyclotron heating *

被引:6
|
作者
Kumar, A. [1 ]
Caneses-Marin, J. F. [1 ,2 ]
Lau, C. [1 ]
Goulding, R. [1 ]
机构
[1] Oak Ridge Natl Lab, 1 Bethel Valley Rd, Oak Ridge, TN 37831 USA
[2] CompX, Del Mar, CA 92014 USA
关键词
hybrid PIC; MPEX; Proto-MPEX; Coulomb collisions; RF heating operator; plasma parallel transport; HYBRID SIMULATION; FLUID CODE; IMPLICIT; PLASMAS;
D O I
10.1088/1741-4326/acb160
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The Material Plasma Exposure eXperiment (MPEX) is a steady state linear device with the goal to perform plasma material interaction studies at future fusion reactor relevant conditions. A prototype of MPEX referred as 'Proto-MPEX' is designed to carry out research and development related to source, heating and transport concepts on the planned full MPEX device. The auxiliary heating schemes in MPEX are based on cyclotron resonance heating with radio frequency (RF) waves. Ion cyclotron heating (ICH) and electron cyclotron heating in MPEX are used to independently heat the ions and electrons and provide fusion divertor conditions ranging from sheath-limited to fully detached divertor regimes at a material target. A hybrid particle-in-cell code- PICOS++ is developed and applied to understand the plasma parallel transport during ICH in MPEX/Proto-MPEX to the target. With this tool, evolution of the distribution function of MPEX/Proto-MPEX ions is modeled in the presence of (a) Coulomb collisions, (b) volumetric particle sources and (c) quasi-linear RF-based ICH. The code is benchmarked against experimental data from Proto-MPEX and simulation data from B2.5 EIRENE. The experimental observation of 'density-drop' near the target in Proto-MPEX and MPEX during ICH is demonstrated and explained via physics-based arguments using PICOS++ modeling. In fact, the density drops at the target during ICH in Proto-MPEX/MPEX to conserve the flux and to compensate for the increased flow during ICH. Furthermore, sensitivity scans of various plasma parameters with respect to ICH power are performed for MPEX to investigate its role on plasma transport and particle and energy fluxes at the target.
引用
收藏
页数:20
相关论文
共 50 条
  • [41] Parallel and poloidal fluxes in turbulent non-ohmic plasmas: An ion-cyclotron resonance heating case
    Pometescu, N
    Weyssow, B
    PHYSICS OF PLASMAS, 2003, 10 (04) : 1048 - 1059
  • [42] MODELING LOOP ANTENNAS FOR HF PLASMA-HEATING IN THE ION-CYCLOTRON FREQUENCY-RANGE
    BRAMBILLA, M
    PLASMA PHYSICS AND CONTROLLED FUSION, 1993, 35 (01) : 41 - 62
  • [43] Resolving interactions between ion-cyclotron range of frequencies heating and the scrape-off layer plasma in EAST using divertor probes
    Perkins, R. J.
    Hosea, J. C.
    Taylor, G.
    Bertelli, N.
    Kramer, G. J.
    Luo, Z. P.
    Qin, C. M.
    Wang, L.
    Xu, J. C.
    Zhang, X. J.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2019, 61 (04)
  • [44] Ion cyclotron resonance frequency heating of deuterium plasmas in the Joint European Torus: Modeling of the resonant minority ion distribution function
    JET Joint Undertaking, Abingdon, Oxfordshire, OX14 3EA, United Kingdom
    不详
    不详
    Phys Plasmas, 9 (3489-3497):
  • [45] Ion cyclotron resonance frequency heating of deuterium plasmas in the Joint European Torus: Modeling of the resonant minority ion distribution function
    Testa, D
    Core, WGF
    Gondhalekar, A
    PHYSICS OF PLASMAS, 1999, 6 (09) : 3489 - 3497
  • [46] Experimental and simulation study of helium plasma transport during ion cyclotron resonance heating in MPS-LD
    Sun, Changjiang
    Zhang, Yanjie
    Sang, Chaofeng
    Wu, Jintao
    Gao, Shuaishuai
    Peng, Yao
    Wang, Hao
    Jin, Chongyang
    Wang, Yue
    Wang, Qi
    Wang, Dezhen
    NUCLEAR FUSION, 2025, 65 (05)
  • [47] NEOCLASSICAL TRANSPORT OF ENERGETIC MINORITY TAIL IONS GENERATED BY ION-CYCLOTRON RESONANCE HEATING IN TOKAMAK GEOMETRY
    CHANG, CS
    HAMMETT, GW
    GOLDSTON, RJ
    PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1990, 2 (10): : 2383 - 2394
  • [48] Coupled KIPP-EDGE2D modeling of parallel transport in the SOL and divertor plasma for the ITER baseline scenario
    Chankin, A., V
    Corrigan, G.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2023, 65 (08)
  • [49] Modeling of neutron emission spectroscopy in JET discharges with fast tritons from (T)D ion cyclotron heating
    Tardocchi, M.
    Gorini, G.
    Sunden, E. Andersson
    Conroy, S.
    Ericsson, G.
    Johnson, M. Gatu
    Giacomelli, L.
    Hellesen, C.
    Hjalmarsson, A.
    Kallne, J.
    Ronchi, E.
    Sjostrand, H.
    Weiszflog, M.
    Johnson, T.
    Lamalle, P. U.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2006, 77 (12):
  • [50] EFFECTS OF ION COLLISIONS ON QUASI-LINEAR HEATING BY THE CURRENT-DRIVEN ION-CYCLOTRON INSTABILITY IN THE HIGH-LATITUDE IONOSPHERE
    SATYANARAYANA, P
    KESKINEN, MJ
    CHATURVEDI, PK
    OSSAKOW, SL
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1989, 94 (A5): : 5510 - 5514