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首页> 外文期刊>Physics of plasmas >Verification of GENE and GYRO with L-mode and I-mode plasmas in Alcator C-Mod
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Verification of GENE and GYRO with L-mode and I-mode plasmas in Alcator C-Mod

机译:Alcator C-Mod中的L-Mode和I模式等离子体验证基因和陀螺仪

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Verification comparisons are carried out for L-mode and I-mode plasma conditions in Alcator C-Mod. We compare linear and nonlinear ion-scale calculations by the gyrokinetic codes GENE and GYRO to each other and to the experimental power balance analysis. The two gyrokinetic codes' linear growth rates and real frequencies are in good agreement throughout all the ion temperature gradient mode branches and most of the trapped electron mode branches of the k(y)rho(s) spectra at r/a = 0.65, 0.7, and 0.8. The shapes of the toroidal mode spectra of heat fluxes in nonlinear simulations are very similar for k(y)rho(s) = 0.5, but in most cases GENE has a relatively higher heat flux than GYRO at higher mode numbers. The ratio of ion to electron heat flux is similar in the two codes' simulations, but the heat fluxes themselves do not agree in almost all cases. In the I-mode regime, GENE's heat fluxes are similar to 3 times those from GYRO, and they are similar to 60%-100% higher than GYRO in the L-mode conditions. The GYRO under-prediction of Q(e) is much reduced in GENE's L-mode simulations, and it is eliminated in the I-mode simulations. This largely improved agreement with the experimental electron heat flux is offset, however, by the large overshoot of GENE's ion heat fluxes, which are 2-3 times the experimental level, and its electron heat flux overshoot at r/a = 0.80 in the I-mode. Rotation effects can explain part of the difference between the two codes' predictions, but very significant differences remain in simulations without any rotation effects. Published by AIP Publishing.
机译:在Alcator C-Mod中的L模式和I模式等离子体条件下进行验证比较。我们将旋转素码基因和陀螺仪彼此相互比较线性和非线性离子尺度计算并进行实验功率平衡分析。两个gyrokinetic代码线性生长速率和实际频率在整个所有的离子温度梯度模式分支良好的一致性,并在R / A = 0.65,0.7大多数第k(y)的RHO的俘获电子模式分支的(一个或多个)光谱和0.8。非线性模拟中的热通量的环形模式光谱的形状对于K(Y)rhO非常相似,但在大多数情况下,基因在较高模式编号处具有比陀螺仪相对较高的热通量。在两种代码的模拟中,离子与电子热量的比例类似,但热量势态本身在几乎所有情况下都不一致。在I模式制度中,基因的热通量类似于来自陀螺仪的3倍,它们在L模式条件下比陀螺仪高出60%-100%。基因的L模式模拟,Q(e)的陀螺仪预测大大减少,并且在I模式模拟中消除了。这主要改善了实验电子热通量的一致性,然而,由于基因离子热通量的大过冲,这是实验水平的2-3倍,其电子热量在I中的r / a = 0.80处过冲-模式。旋转效果可以解释两种代码预测之间的差异,但在没有任何旋转效应的情况下仍然存在非常显着的差异。通过AIP发布发布。

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