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Electron Cyclotron Radiative Transfer in Fusion Plasmas

机译:聚变等离子体中的电子回旋加速器辐射转移

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摘要

The approaches developed to describe radiative transfer of electron cyclotron (EC) radiation in a plasma in local thermodynamic equilibrium, taking due account of the nonlocal nature of the process owing to reabsorption and wall reflection, are reviewed. As for a cylindrical plasma with specularly reflecting walls an analytical solution of the equation of radiative transfer can be derived, an exact formula for the net power density radiated locally can be given in this case. Making use of an improved expression for the EC absorption coefficient, a detailed numerical analysis can be carried out varying both the wall reflection coefficient and the radial profile of the plasma temperature, which reveals that a reversal of the net power density profile can occur on the plasma outboard for sufficiently high wall reflectivity. A comparison with bremsstrahlung radiation profiles as well as approximate EC net power density profiles as calculated with the CYTRAN code developed by Tamor is performed. The total EC radiated power is also evaluated; its scaling with the reflection coefficient is found to be very well described by a scaling following from a recently established global model for the EC radiation, which improves the well-known Trubnikov scaling. The results obtained are discussed in view of their possible relevance to affecting the plasma temperature profile.
机译:审查了描述在局部热力学平衡状态下等离子体中电子回旋加速器(EC)辐射的辐射转移的方法,该方法应考虑到由于重吸收和壁反射而引起的过程的非局部性质。对于具有镜面反射壁的圆柱形等离子体,可以得出辐射传递方程的解析解,在这种情况下,可以给出局部辐射净功率密度的精确公式。利用EC吸收系数的改进表达式,可以对壁反射系数和等离子体温度的径向曲线进行改变,进行详细的数值分析,这表明净功率密度曲线可以逆转。等离子舷外用于足够高的壁反射率。执行与致辐射曲线以及由Tamor开发的CYTRAN代码计算得出的近似EC净功率密度曲线的比较。还评估了总的EC辐射功率;通过最近建立的EC辐射全局模型的缩放,可以很好地描述其与反射系数的缩放,从而改善了众所周知的Trubnikov缩放。考虑到它们与影响等离子体温度分布的可能相关性,讨论了获得的结果。

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