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Numerical analysis of the effects of normalized plasma pressure on RMP ELM suppression in DIII-D

机译:归一化血浆压力对DIII-D中RMP ELM抑制作用影响的数值分析

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The effect of normalized plasma pressure as characterized by normalized pressure parameter (β_N) on the suppression of edge localized modes (ELMs) using resonant magnetic perturbations (RMPs) is studied in low-collisionality (v~* ≥ 0.2) H-mode plasmas with low-triangularity (<δ>) = 0.25)andITERsimilarshapes(<δ>) = 0.51). Experimental results have suggested that ELM suppression by RMPs requires a minimum threshold in plasma pressure as characterized by fa. The variations in the vacuum field topology with fa due to safety factor profile and island overlap changes caused by variation of the Shafranov shift and pedestal bootstrap current are examined numerically with the field line integration code TRIP3D. The results show very small differences in the vacuum field structure in terms of the Chirikov (magnetic island overlap) parameter, Poincare sections and field line loss fractions. These differences do not appear to explain the observed threshold in β_N for ELM suppression. Linear peeling-ballooning stability analysis with the ELITE code suggests that the ELMs which persist during the RMPs when β_N is below the observed threshold are not type I ELMs, because the pedestal conditions are deep within the stable regime for peeling-ballooning modes. These ELMs have similarities to type III ELMs or low density ELMs.
机译:在低碰撞度(v〜*≥0.2)H型等离子体中,研究了以归一化压力参数(β_N)为特征的归一化等离子体压力对使用共振磁扰动(RMP)抑制边缘局域模(ELM)的影响。低三角形(<δ>)= 0.25)和ITER相似形状(<δ>)= 0.51)。实验结果表明,RMP抑制ELM需要以fa为特征的血浆压力最低阈值。使用场线积分代码TRIP3D以数字方式检查了由于安全系数分布和由Shafranov位移和基座自举电流的变化引起的孤岛重叠变化导致的真空场拓扑随fa的变化。结果表明,根据Chirikov(磁岛重叠)参数,庞加莱截面和场线损耗分数,真空场结构的差异很小。这些差异似乎无法解释观察到的用于ELM抑制的β_N阈值。使用ELITE代码进行的线性剥离-气球稳定性分析表明,当β_N低于观察到的阈值时,在RMP期间持续存在的ELM并非I型ELM,因为在剥离-气球模式的稳定范围内基座条件很深。这些ELM与III型ELM或低密度ELM相似。

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