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D-T burning plasma characteristics in an A=2 tokamak reactor

机译:A = 2托卡马克反应堆中的D-T燃烧等离子体特性

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The deuterium-tritium (D-T) burning plasma characteristic in an aspect ratio A=2 tokamak reactor is studied based on a simple equilibrium configuration, the Soloviev-type configuration. Operation limits for the Troyon beta value and for the Greenwald density value as well as for the ITER H-mode confinement scaling are used as the benchmark.It is found that in addition to suitable elongation, large triangularity has advantage for arriving at high beta value and obtaining high fusion power output. Compared to the present ITER design, the A=2 system can have very good merit for the avoidance of disruptions by setting rather high edge q value while keeping relatively large total toroidal current.The main disadvantage of decreasing the aspect ratio is due to the loss of more useful space in the inward region that leads to the decrease of toroidal magnetic field in the plasma region, then worsening the fusion merit. Our analysis and calculation also present a trade-off in this respect. Due to simple equilibrium configuration assumed, some other important issues such as the bootstrap current alignment cannot be optimized. However, the present analysis can offer an insight into the advantages of the medium aspect ratio reactor system that is a blank in present-day tokamak study.
机译:基于简单的平衡构型,索洛维耶夫型构型,研究了纵横比为A = 2的托卡马克反应堆中的氘-((D-T)燃烧等离子体特性。 Troyon beta值和Greenwald密度值以及ITER H模式限制比例的操作极限被用作基准,发现除了合适的伸长率外,大的三角形还具有达到高beta值的优势。并获得高融合功率输出。与目前的ITER设计相比,A = 2系统可以通过设置较高的边沿q值同时保持相对较大的总环形电流来避免中断,具有很好的优点。降低长宽比的主要缺点是由于损耗向内区域中更多有用的空间会导致等离子体区域中环形磁场的减小,从而使融合性能恶化。我们的分析和计算也提出了这方面的权衡。由于假设了简单的平衡配置,因此无法优化其他一些重要问题,例如自举电流对准。但是,本分析可以深入了解中等长宽比反应堆系统的优势,而该系统在当今的托卡马克研究中是空白。

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