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EDGE2D-EIRENE simulations of the influence of isotope effects and anomalous transport coefficients on near scrape-off layer radial electric field

机译:Edge2d- eIriene模拟同位素效应和异常输送系数对近刮除层径向电场的影响

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EDGE2D-EIRENE (the 'code') simulations show that radial electric field, Er, in the near scrape-off layer (SOL) of tokamaks can have large variations leading to a strong local E x B shear greatly exceeding that in the core region. This was pointed out in simulations of JET plasmas with varying divertor geometry, where the magnetic configuration with larger predicted near SOL E-r was found to have lower H-mode power threshold, suggesting that turbulence suppression in the SOL by local E. x. B shear can be a player in the L-H transition physics (Delabie et al 2015 42nd EPS Conf. on Plasma Physics (Lisbon, Portugal, 22-26 June 2015) paper O3.113 (http://ocs.ciemat.es/EPS2015PAP/pdf/O3.113.pdf), Chankin et al 2017 Nucl. Mater. Energy 12 273). Further code modeling of JET plasmas by changing hydrogen isotopes (H-D-T) showed that the magnitude of the near SOL E-r is lower in H cases in which the H-mode threshold power is higher (Chankin et al 2017 Plasma Phys. Control. Fusion 59 045012). From the experiment it is also known that hydrogen plasmas have poorer particle and energy confinement than deuterium plasmas, consistent with the code simulation results showing larger particle diffusion coefficients at the plasma edge, including SOL, in hydrogen plasmas (Maggi et al 2018 Plasma Phys. Control. Fusion 60 014045). All these experimental observations and code results support the hypothesis that the near SOL E x B shear can have an impact on the plasma confinement. The present work analyzes neutral ionization patterns of JET plasmas with different hydrogen isotopes in L-mode cases with fixed input power and gas puffing rate, and its impact on target electron temperature, T-e, and SOL E-r. The possibility of a self-feeding mechanism for the increase in the SOL E-r via the interplay between poloidal E x B drift and target T-e is discussed. It is also shown that reducing anomalous turbulent transport coefficients, particle diffusion and electron and ion heat conductivities, lead
机译:Edge2D-EIRENE('代码')模拟显示,径向电场,ER,在托卡马克的近刮除层(溶胶)中可能具有大的变化,导致强大的本地E X B剪切大大超过核心区域。这在具有变化的偏转器几何形状的射流等离子体的模拟中指出的是,发现具有较大预测的溶胶E-R的磁性配置具有较低的H模式功率阈值,表明通过本地E. X中的溶解中的湍流抑制。 B剪切可以是LH过渡物理学中的一名球员(Delabie等,2015年42次EPS Conf。血浆物理(Lisbon,葡萄牙,2015年6月22日至26日)Paper O3.113(http://ocs.ciemat.es/eps2015pap /pdf/o3.113.pdf),chankin等,2017核素。Mater。能量12 273)。通过改变氢同位素(HDT)进一步的射流等离子体的代码建模表明,H型溶液的幅度较低,其中H模式阈值功率较高(Chankin等,血浆物理。控制。融合59 045012 )。从实验中,还已知氢等离子体具有比氘质量更差的颗粒和能量限制,这与氘代展示在氢等离子体中的等离子体边缘处的较大粒子扩散系数(包括溶胶)(Maggi等,等离子体物理)的代码仿真结果一致。控制。融合60 014045)。所有这些实验观察和代码结果支持近溶胶E X B剪切可能对等离子体限制产生影响的假设。目前的作品分析了具有固定输入功率和气体膨化速率的L模式壳体中不同氢同位素的射流等离子体的中性电离模式,其对目标电子温度,T-E和溶胶E-R的影响。讨论了通过聚片E×B漂移和靶T-e之间的相互作用增加了用于溶胶E-R的自馈机制的可能性。还示出了减少异常湍流传输系数,粒子扩散和电子和离子导热率,铅

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