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首页> 外文期刊>Plasma physics and controlled fusion >Comparison of BES measurements of ion-scale turbulence with direct gyro-kinetic simulations of MAST L-mode plasmas
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Comparison of BES measurements of ion-scale turbulence with direct gyro-kinetic simulations of MAST L-mode plasmas

机译:使用MAST L型等离子体的直接陀螺动力学模拟比较离子尺度湍流的BES测量

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摘要

Observations of ion-scale (kyρi ≤ 1) density turbulence of relative amplitude ≥0.2% are available on the Mega Amp Spherical Tokamak (MAST) using a 2D (8 radial × 4 poloidal channel) imaging beam emission spectroscopy diagnostic. Spatial and temporal characteristics of this turbulence, i.e., amplitudes, correlation times, radial and perpendicular correlation lengths and apparent phase velocities of the density contours, are determined by means of correlation analysis. For a low-density, L-mode discharge with strong equilibrium flow shear exhibiting an internal transport barrier in the ion channel, the observed turbulence characteristics are compared with synthetic density turbulence data generated from global, non-linear, gyro-kinetic simulations using the particle-in-cell code NEMORB. This validation exercise highlights the need to include increasingly sophisticated physics, e.g., kinetic treatment of trapped electrons, equilibrium flow shear and collisions, to reproduce most of the characteristics of the observed turbulence. Even so, significant discrepancies remain: an underprediction by the simulations of the turbulence amplitude and heat flux at plasma periphery and the finding that the correlation times of the numerically simulated turbulence are typically two orders of magnitude longer than those measured in MAST. Comparison of these correlation times with various linear timescales suggests that, while the measured turbulence is strong and may be 'critically balanced', the simulated turbulence is weak.
机译:在兆安球形托卡马克(MAST)上,可以使用2D(8径向×4倍体通道)成像束发射光谱诊断技术观察相对振幅≥0.2%的离子级(kyρi≤1)密度湍流。通过相关分析来确定这种湍流的时空特征,即幅度,相关时间,径向和垂直相关长度以及密度等值线的视相速度。对于在离子通道中表现出内部输运障碍的低平衡,L型放电,强平衡流剪切力,将观察到的湍流特性与通过整体非线性,陀螺动力学模拟生成的合成密度湍流数据进行了比较。单元中的粒子代码NEMORB。这项验证工作强调需要包括越来越复杂的物理学,例如对捕获电子的动力学处理,平衡流剪切和碰撞,以重现观察到的湍流的大多数特征。即便如此,仍然存在重大差异:通过对等离子体外围湍流幅度和热通量的模拟进行的低估,以及发现数值模拟湍流的相关时间通常比在MAST中测量的相关时间长两个数量级。这些相关时间与各种线性时标的比较表明,尽管测得的湍流很强并且可能是“临界平衡”的,但模拟的湍流却很弱。

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