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Modeling of energetic particle transport in optimized stellarators

A. Bader, D.T. Anderson, M. Drevlak, B.J. Faber, C.C. Hegna, S. Henneberg, M. Landreman, J.C. Schmitt, Y. Suzuki, A. Ware2021年被引用 23Nuclear FusionIF 3出版社

Nine stellarator configurations, three quasiaxisymmetric, three quasihelically symmetric and three non-quasisymmetric are scaled to ARIES-CS size and analyzed for energetic particle content. The best performing configurations with regard to energetic particle confinement also perform the best on the neoclassical Γc metric, which attempts to align contours of the second adiabatic invariant with flux surfaces. Quasisymmetric configurations that simultaneously perform well on Γc and quasisymmetry have the best overall confinement, with collisional losses under 3%, approaching the performance of ITER with ferritic inserts.

日本語訳

9つのステラレーター配位、すなわち3つの準軸対称、3つの準螺旋対称、および3つの非準対称の配位をARIES-CSサイズにスケーリングし、高エネルギー粒子含有量について解析した。高エネルギー粒子閉じ込めに関して最も優れた性能を示す配位は、第2断熱不変量の等高線を磁気面に整列させることを試みる新古典的Γc指標においても最も優れた性能を示す。Γcと準対称性の両方において良好な性能を同時に示す準対称配位は、全体として最良の閉じ込め性能を有し、衝突損失は3%未満であり、フェライト挿入材を備えたITERの性能に近づく。

装置

iter中精度(概要文一致)

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StellaratorEnergetic particlesParticle transport
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