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Plasma performance and scaling laws in the RFX-mod reversed-field pinch experiment

机译:RFX-mod反向场收缩实验中的等离子体性能和缩放定律

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The large range of plasma currents (I_p = 0.2-1.6 MA) and feedback-controlled magnetic boundary conditions of the RFX-mod experiment make it well suited to performing scaling studies. The assessment of such scaling, in particular those on temperature and energy confinement, is crucial both for improving the operating reversed-field pinch (RFP) devices and for validating the RFP configuration as a candidate for the future fusion reactors. For such a purpose scaling laws for magnetic fluctuations, temperature and energy confinement have been evaluated in stationary operation. RFX-mod scaling laws have been compared with those obtained from other RFP devices and numerical simulations. The role of the magnetic boundary has been analysed, comparing discharges performed with different active control schemes of the edge radial magnetic field.
机译:等离子体电流的大范围(I_p = 0.2-1.6 MA)和RFX-mod实验的反馈控制磁边界条件使其非常适合进行定标研究。评估这样的缩放比例,尤其是在温度和能量限制方面的缩放比例,对于改善运行的反向场收缩(RFP)装置以及验证RFP配置是否适合未来的聚变反应堆都至关重要。为此目的,已经在静止操作中评估了磁波动,温度和能量限制的缩放定律。已经将RFX-mod缩放定律与从其他RFP设备和数值模拟获得的定律进行了比较。已分析了磁边界的作用,比较了使用边缘径向磁场的不同主动控制方案执行的放电。

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