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Quasi-static free-boundary equilibrium of toroidal plasma with CEDRES plus plus : Computational methods and applications

机译:具有CEDRES plus plus的环形血浆的拟静态自由边界平衡:计算方法和应用

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摘要

We present a comprehensive survey of various computational methods in CEDRES++ (Couplage Equilibre Diffusion Resistive pour l'Etude des Scenarios) for finding equilibria of toroidal plasma. Our focus is on free-boundary plasma equilibria, where either poloidal field coil currents or the temporal evolution of voltages in poloidal field circuit systems are given data. Centered around a piecewise linear finite element representation of the poloidal flux map, our approach allows in large parts the use of established numerical schemes. The coupling of a finite element method and a boundary element method gives consistent numerical solutions for equilibrium problems in unbounded domains. We formulate a new Newton method for the discretized nonlinear problem to tackle the various nonlinearities, including the free plasma boundary. The Newton method guarantees fast convergence and is the main building block for the inverse equilibrium problems that we can handle in CEDRES++ as well. The inverse problems aim at finding either poloidal field coil currents that ensure a desired shape and position of the plasma or at finding the evolution of the voltages in the poloidal field circuit systems that ensure a prescribed evolution of the plasma shape and position. We provide equilibrium simulations for the tokamaks ITER and WEST to illustrate the performance of CEDRES++ and its application areas.
机译:我们对CEDRES ++(耦合平衡电阻扩散法)中的各种计算方法进行了全面调查,以寻找环形血浆的平衡。我们的重点是自由边界等离子体平衡,在此给出极性电场线圈电流或极性电场电路系统中电压的时间演化数据。以极点通量图的分段线性有限元表示为中心,我们的方法在很大程度上允许使用已建立的数值方案。有限元法和边界元法的结合为无界域中的平衡问题提供了一致的数值解。我们为离散非线性问题制定了一种新的牛顿法,以解决各种非线性问题,包括自由等离子体边界。牛顿法保证了快速收敛,并且是我们也可以在CEDRES ++中处理的逆平衡问题的主要构成部分。反问题的目的是找到确保等离子体的所需形状和位置的极向场线圈电流,或者找到确保等离子体的形状和位置按规定演变的极向场电路系统中电压的演变。我们提供了托卡马克ITER和WEST的平衡仿真,以说明CEDRES ++的性能及其应用领域。

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