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The role of drifts on the isotope effect on divertor plasma detachment in JET Ohmic discharges

机译:漂移对射流欧姆排放中逆变器等离子体脱离的同位素效应的作用

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Experiments in JET-ILW Ohmic confinement mode plasmas show that the line-averaged detachment onset density in deuterium discharges is approx. 10% lower than in hydrogen discharges. The magnitude of the isotope effect on the detachment onset density depends on the divertor geometry, the magnetic configuration and the throughput of the sub-divertor/divertor cryopump system. Simulations with the edge fluid code EDGE2D-EIRENE revealed that the pumping of neutral gas within the JET divertor is effective near the outer divertor target only. The studies show that the magnitude of the isotope effect is determined by the molecular pressure in the sub-divertor pumping plenum.According to the simulations, operating in vertical configurations or closer proximity of the strike point increases the molecular pressure (and thus throughput) in front of the outer pumping plenum by up to 15% compared to the horizontal configuration, thus producing a stronger isotope effect on the detachment onset density. Similarly, EDGE2D-EIRENE predicts that plasma, hence neutral, redistribution due to E?×?B drifts in favourable BTconfigurations (ion B?×?grad(B) towards the divertor) decreases the throughput. The total decrease of the throughput reduces the isotope effect on the detachment onset density, and decreases the detachment onset density for both isotopes.
机译:Jet-ILW欧姆监禁模式等离子体的实验表明,氘放电中的线平均分离起始密度约为。低于氢气排放量的10%。同位素效应对分离生物密度的幅度取决于子倾斜器/偏转器低温泵系统的偏转器几何形状,磁配置和吞吐量。利用边缘流体代码边缘2d-烯烯的模拟显示,射流器内的中性气体泵送仅在外部偏移靶附近有效。这些研究表明,同位素效应的大小由子边界泵泵浦通风泵中的分子压力确定。根据模拟,在垂直配置中操作或更近的冲击点的接近地增加了分子压力(并因此的吞吐量)与水平构型相比,外部泵送通泡的前面可达15%,从而产生更强的同位素对分离发作密度的影响。类似地,边缘2d-烯烯预测等离子体,因此由于e≤βb引起的等离子体的再分配在良好的btonfigurations(离子b?×= =偏转器的梯级)下漂移,降低了吞吐量。吞吐量的总减少降低了对脱离发病密度的同位素效应,并降低了两种同位素的脱离发作密度。

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