A new quasilinear model for turbulent momentum transport in tokamaks with flow shear and plasma shaping

Sun, Haomin, Ball, Justin, Brunner, Stephan, Volcokas, Arnas
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Abstract

Sufficiently strong flow shear reduces turbulent transport in tokamak plasmas, thereby improving the prospects for fusion power plants. It is therefore of great importance to efficiently explore parameter space to find where strong plasma flow can be achieved. To this end, we propose a new, physically motivated quasi-linear model for estimating momentum transport from turbulence in the presence of toroidal flow shear and plasma shaping. The method gives good estimates of momentum transport for up-down asymmetric geometries as well as low magnetic shear and tight aspect ratio. The results are benchmarked with high-fidelity nonlinear GENE simulations, demonstrating that it provides a fast and accurate estimate of momentum transport.
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具有流动剪切和等离子体成形的托卡马克紊流动量输运新拟线性模型
足够强的流动剪切减少了托卡马克等离子体中的湍流输运,从而改善了核聚变发电厂的前景。因此,有效地探索参数空间以找到可以实现强等离子体流的地方是非常重要的。为此,我们提出了一个新的、物理驱动的准线性模型,用于估计在环形流剪切和等离子体成形存在的湍流中的动量输运。该方法对上下不对称几何以及低磁切变和紧长径比的动量输运有很好的估计。结果与高保真非线性GENE模拟进行了基准测试,表明该方法可以快速准确地估计动量输运。
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