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首页> 外文期刊>Nuclear Materials and Energy >A κ ? ε model for plasma anomalous transport in tokamaks: closure via the scaling of the global confinement
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A κ ? ε model for plasma anomalous transport in tokamaks: closure via the scaling of the global confinement

机译: < mml:mi>κ ε 模型:通过全局约束的缩放来封闭

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摘要

A reduced model for radial anomalous transport of plasma in tokamaks, inspired by the Reynolds-Averaged Navier–Stokes (RANS) approach, is presented assuming diffusion as governing mechanism. In order to self-consistently calculate transport coefficients, an empirical equation is built for the turbulent kinetic energy and the system is closed via the scaling law of global confinement. In such way the SOL width appears to recover experimental dependencies with respect to machine parameters and interestingly, when the model is implemented in a 2D transport code for a realistic study-case, mean fields retrieve some features already observed in 1st-principle turbulent codes.
机译:在雷诺平均Navier-Stokes(RANS)方法的启发下,提出了一个简化的托卡马克血浆径向异常运输模型,并假设扩散为控制机制。为了自洽地计算输运系数,针对湍动能建立了一个经验方程,并通过全局约束的比例定律封闭了系统。以这种方式,SOL宽度似乎恢复了与机器参数有关的实验依赖性,有趣的是,当针对实际的研究案例在2D传输代码中实现模型时,均值字段将检索已经在第一原理湍流代码中观察到的某些特征。

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