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Analysis of edge magnetic field line structure in ITER due to in-vessel ELM control coils

机译:船内ELM控制线圈在ITER中产生的边缘磁场线结构分析

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In this work we evaluated the ITER ELM coils design based on two metrics: the Chirikov vacuum magnetic island overlap parameter, and the vacuum Field Line Loss Fraction. The study was performed for a range of current amplitudes for three different n=4 waveforms: square, cosine and sine. The results indicated that ITER ELM coils are designed with a high level of flexibility to accommodate different operation scenarios (H-mode and Steady State) with different values of q_(95) and q-profiles. The magnetic island overlap analysis showed that ITER ELM coils are capable of matching the DIII-D 1-coil spectrum. The Field Line Loss analysis showed that edge vacuum stochastization might be achieved that is similar or greater than in DIII-D. Fault analysis of the coils indicated that ITER ELM coils are robust and show good characteristics even with 11%of dead coils.
机译:在这项工作中,我们基于两个指标评估了ITER ELM线圈设计:Chirikov真空磁岛重叠参数和真空场线损耗率。针对三种不同的n = 4波形:方波,余弦和正弦波,在一定的电流幅度范围内进行了研究。结果表明,ITER ELM线圈的设计具有很高的灵活性,可以适应具有不同q_(95)和q-profile值的不同操作场景(H模式和稳态)。磁岛重叠分析表明,ITER ELM线圈能够匹配DIII-D 1-线圈光谱。场线损耗分析表明,可以实现与DIII-D相似或更高的边缘真空随机化。线圈的故障分析表明,即使有11%的死线圈,ITER ELM线圈也很坚固并且显示出良好的特性。

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