Nonlinear gyrokinetic modelling of high confinement negative triangularity plasmas

IF 3.5 1区 物理与天体物理 Q1 PHYSICS, FLUIDS & PLASMAS Nuclear Fusion Pub Date : 2024-06-30 DOI:10.1088/1741-4326/ad5a1c
A. Marinoni, M.E. Austin, J. Candy, C. Chrystal, S.R. Haskey, M. Porkolab, J.C. Rost and F. Scotti
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Abstract

Nonlinear gyrokinetic simulations correctly predict particle as well as ion and electron energy fluxes of high confinement plasmas with a negative triangularity cross sectional shape, showing that core transport in these plasmas is well described by standard gyrokinetic models. Experimentally inferred power balance fluxes are mostly reproduced within one standard deviation across a wide portion of the minor radius. Experimental conditions are reproduced by ion scale simulations, without the need to include density and temperature profile curvature effects. The experimental case is used as baseline to predict that the non-dimensional confinement scaling in negative triangularity plasmas increases strongly with plasma current while slightly degrading at increasing normalized pressure and decreasing collisionality. Recent experiments showed that low toroidal rotation negatively impacts confinement; consistent with the experiment, simulations predict that low rotational shear significantly affects confinement unless the plasma effective charge is maintained above a minimum level. Core confinement is predicted to significantly degrade in low aspect ratio devices.
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高约束负三角形等离子体的非线性陀螺动力学建模
非线性陀螺动力学模拟正确预测了具有负三角形横截面形状的高约束等离子体的粒子以及离子和电子能量通量,表明标准陀螺动力学模型可以很好地描述这些等离子体中的核心传输。实验推断出的能量平衡通量在小半径的很大一部分都在一个标准偏差范围内得到了再现。离子尺度模拟再现了实验条件,无需包括密度和温度曲线的曲率效应。以实验情况为基线,可以预测负三角形等离子体中的非维度约束缩放随等离子体电流的增加而强烈增加,同时在归一化压力增加和碰撞性降低时略有退化。最近的实验表明,低环形旋转会对约束产生负面影响;与实验一致,模拟预测低旋转剪切会显著影响约束,除非等离子体有效电荷保持在最低水平以上。据预测,在低纵横比装置中,磁芯约束能力会显著下降。
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来源期刊
Nuclear Fusion
Nuclear Fusion 物理-物理:核物理
CiteScore
6.30
自引率
39.40%
发文量
411
审稿时长
2.6 months
期刊介绍: Nuclear Fusion publishes articles making significant advances to the field of controlled thermonuclear fusion. The journal scope includes: -the production, heating and confinement of high temperature plasmas; -the physical properties of such plasmas; -the experimental or theoretical methods of exploring or explaining them; -fusion reactor physics; -reactor concepts; and -fusion technologies. The journal has a dedicated Associate Editor for inertial confinement fusion.
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