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首页> 外文期刊>Plasma physics and controlled fusion >Multi-scale gyrokinetic simulations of an alcator C-Mod, ELM-y H-mode plasma
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Multi-scale gyrokinetic simulations of an alcator C-Mod, ELM-y H-mode plasma

机译:Alcator C-Mod,ELM-Y H模式等离子体的多尺度旋转模拟

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High fidelity, multi-scale gyrokinetic simulations capable of capturing both ion (k(theta)rho(s) similar to O(1.0)) and electron-scale (k(theta)rho(s) similar to O(1.0)) turbulence were performed in the core of an Alcator C-Mod ELM-y H-mode discharge which exhibits reactor-relevant characteristics. These simulations, performed with all experimental inputs and realistic ion to electron mass ratio ((m(i)/m(e))(1/2) = 60.0 provide insight into the physics fidelity that may be needed for accurate simulation of the core of fusion reactor discharges. Three multi-scale simulations and series of separate ion and electron-scale simulations performed using the GYRO code (Candy and Waltz 2003 J. Comput. Phys. 186 545) are presented. As with earlier multi-scale results in L-mode conditions (Howard et al 2016 Nucl. Fusion 56 014004), both ion and multi-scale simulations results are compared with experimentally inferred ion and electron heat fluxes, as well as the measured values of electron incremental thermal diffusivities-indicative of the experimental electron temperature profile stiffness. Consistent with the L-mode results, cross-scale coupling is found to play an important role in the simulation of these H-mode conditions. Extremely stiff ion-scale transport is observed in these high-performance conditions which is shown to likely play and important role in the reproduction of measurements of perturbative transport. These results provide important insight into the role of multi-scale plasma turbulence in the core of reactor-relevant plasmas and establish important constraints on the the fidelity of models needed for predictive simulations.
机译:高保真,能够捕获与O(1.0)类似的离子(K(Q型)Rho)和类似于O(1.0)的rho(k(k(theta)rho)湍流在Alcator C-MOD ELM-Y H模式放电的核心中进行,其表现出反应器相关的特性。使用所有实验输入和现实离子对电子质量比进行这些模拟((m(i)/ m(e))(1/2)= 60.0提供了对可能所需的物理保真度,以便精确模拟核心融合反应堆放电。使用陀螺码(Candy和Waltz 2003 J. Comput)进行三种多尺度模拟和一系列单独的离子和电子级模拟。展示了Phys.75 545)。与前面的多尺度结果一样L-Mode条件(Howard等2016 Nucl。融合56 014004),将离子和多尺度模拟结果与实验推断离子和电子热通量进行比较,以及电子增量热扩散性的测量值 - 指示实验电子温度曲率刚度。与L模式结果一致,发现串级耦合在这些H模式条件的模拟中起重要作用。在这些高级中观察到极其僵硬的离子尺度传输表现出的繁殖条件可能在扰动运输测量的再现中发挥和重要作用。这些结果对多尺度等离子体湍流的作用提供了重要的了解 - 相关等离子体核心的作用,并对预测模拟所需的模型的保真度建立重要的限制。

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