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Validating a quasi-linear transport model versus nonlinear simulations

机译:验证准线性传输模型与非线性仿真

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摘要

In order to gain reliable predictions on turbulent fluxes in tokamak plasmas, physics based transport models are required. Nonlinear gyrokinetic electromagnetic simulations for all species are still too costly in terms of computing time. On the other hand, interestingly, the quasi-linear approximation seems to retain the relevant physics for fairly reproducing both experimental results and nonlinear gyrokinetic simulations. Quasi-linear fluxes are made of two parts: (1) the quasi-linear response of the transported quantities and (2) the saturated fluctuating electrostatic potential. The first one is shown to follow well nonlinear numerical predictions; the second one is based on both nonlinear simulations and turbulence measurements. The resulting quasi-linear fluxes computed by QuaLiKiz (Bourdelle et al 2007 Phys. Plasmas 14 112501) are shown to agree with the nonlinear predictions when varying various dimensionless parameters, such as the temperature gradients, the ion to electron temperature ratio, the dimensionless collisionality, the effective charge and ranging from ion temperature gradient to trapped electron modes turbulence.
机译:为了获得对托卡马克等离子体中湍流的可靠预测,需要基于物理学的传输模型。就计算时间而言,所有物种的非线性陀螺运动电磁仿真仍然过于昂贵。另一方面,有趣的是,准线性逼近似乎保留了相关的物理原理,可以公平地再现实验结果和非线性陀螺动力学仿真。准线性通量由两部分组成:(1)传输量的准线性响应;(2)饱和波动静电势。所示的第一个遵循良好的非线性数值预测。第二个是基于非线性模拟和湍流测量。当改变各种无量纲参数(例如温度梯度,离子与电子的温度比,无量纲碰撞性)时,由QuaLiKiz(Bourdelle等人,2007 Phys.Plasmas 14 112501)计算出的拟线性通量与非线性预测相符。有效电荷,范围从离子温度梯度到俘获的电子模式湍流。

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