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The isotope effect on divertor conditions and neutral pumping in horizontal divertor configurations in JET-ILW Ohmic plasmas

机译:JET-ILW欧姆等离子体中同位素对偏滤器条件和水平偏滤器配置中性泵浦的影响

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Highlights ? The neutral dynamics within the divertor is significantly affected by the fuelling isotope mass. ? A decrease in neutral throughput in the corner configuration was observed to occur during the onset of the ionization front withdrawal out of the LFS corner. ? The higher susceptibility of the sub-divertor pressures to the proximity of the LFS strike-point to the pumping plenum for deuterium is contrary to previous understanding of the isotope effect on divertor conditions. Abstract Understanding the impact of isotope mass and divertor configuration on the divertor conditions and neutral pressures is critical for predicting the performance of the ITER divertor in DT operation. To address this need, ohmically heated hydrogen and deuterium plasma experiments were conducted in JET with the ITER-like wall in varying divertor configurations. In this study, these plasmas are simulated with EDGE2D-EIRENE outfitted with a sub-divertor model, to predict the neutral pressures in the plenum with similar fashion to the experiments. EDGE2D-EIRENE predictions show that the increased isotope mass results in up to a 25% increase in peak electron densities and 15% increase in peak ion saturation current at the outer target in deuterium when compared to hydrogen for all horizontal divertor configurations. Indicating that a change from hydrogen to deuterium as main fuel decreases the neutral mean free path, leading to higher neutral density in the divertor. Consequently, this mechanism also leads to higher neutral pressures in the sub-divertor. The experimental data provided by the hydrogen and deuterium ohmic discharges shows that closer proximity of the outer strike point to the pumping plenum results in a higher neutral pressure in the sub-divertor. The diaphragm capacitance gauge pressure measurements show that a two to three-fold increase in sub-divertor pressure was achieved in the corner and nearby horizontal configurations compared to the far-horizontal configurations, likely due to ballistic transport (with respect to the plasma facing components) of the neutrals into the sub-divertor. The corner divertor configuration also indicates that a neutral expansion occurs during detachment, resulting in a sub-divertor neutral density plateau as a function of upstream density at the outer-mid plane.
机译:强调 ?偏滤器内的中性动力学受到同位素同位素质量的显着影响。 ?观察到转角构型中性通量的下降发生在从LFS转角开始电离前沿抽出的过程中。 ?副分流器压力对LFS打击点至氘抽气室附近的敏感性较高,这与先前对同位素对分流器条件的影响的认识背道而驰。摘要了解同位素质量和分流器构型对分流器条件和中性压力的影响,对于预测DT运行中ITER分流器的性能至关重要。为了满足这一需求,在JET中对ITER型壁以不同的分流器配置进行了欧姆加热的氢和氘等离子体实验。在这项研究中,这些血浆是用配有分偏器模型的EDGE2D-EIRENE模拟的,以与实验相似的方式预测气室中的中性压力。 EDGE2D-EIRENE的预测表明,与氢相比,所有水平偏滤器配置的同位素质量增加都会导致氘的最大靶电子密度增加25%,氘的峰值离子饱和电流增加15%。表明从氢到氘作为主要燃料的变化会降低中性平均自由程,从而导致分流器中的中性密度更高。因此,该机制还会导致副分流器中的中性压力升高。氢和氘的欧姆放电提供的实验数据表明,外部触击点更靠近抽气室会导致子分流器中的中性压力更高。膜片电容表压力测量结果表明,与远水平构型相比,在拐角处和附近的水平构型中,分偏器压力提高了2到3倍,这可能是由于弹道运输(相对于面向等离子体的组件) )的中性点进入子分流器。拐角偏滤器的构型还表明在分离过程中发生了中性膨胀,从而导致了偏滤器中性密度的平稳期,即中外平面处上游密度的函数。

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