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On a mathematical model arising in MHD perturbed equilibrium for Stellarator devices. A numerical approach

机译:关于Stellarator设备在MHD中产生的扰动平衡的数学模型。数值方法

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We consider a mathematical model related to the stationary regime of a plasma of fusion nuclear, magnetically confined in a Stellarator device. Using the geometric properties of the fusion device, a suitable system of coordinates and averaging methods, the mathematical problem may be reduced to a two dimensional free boundary problem of nonlocal type, where the corresponding differential equation is of the Grad-Shafranov type. The current balance within each flux magnetic gives us the possibility to define the third covariant magnetic field component with respect to the averaged poloidal flux function. We present here some numerical experiences and we give some numerical approach for the averaged poloidal flux and for the third covariant magnetic field component.
机译:我们考虑一个与核聚变等离子体的平稳状态有关的数学模型,该等离子体固定在Stellarator装置中。利用融合装置的几何特性,合适的坐标系和平均方法,可以将数学问题简化为非局部类型的二维自由边界问题,其中相应的微分方程为Grad-Shafranov类型。每个磁通量内的电流平衡使我们有可能相对于平均极向磁通量函数定义第三协变磁场分量。我们在这里介绍了一些数值经验,并给出了平均极化通量和第三协变磁场分量的一些数值方法。

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