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Transport theory for energetic alpha particles and tolerable magnitude of error fields in tokamaks with broken symmetry

K.C. Shaing, C.T. Hsu2014年被引用 16Nuclear FusionIF 3出版社

A transport theory for energetic fusion born alpha particles in tokamaks with broken symmetry has been developed. The theory is a generalization of the theory for neoclassical toroidal plasma viscosity for thermal particles in tokamaks. It is shown that the radial energy transport rate can be comparable to the slowing down rate for energetic alpha particles when the ratio of the typical magnitude of the perturbed magnetic field strength to that of the equilibrium magnetic field strength is of the order of 10−4 or larger. This imposes a constraint on the magnitude of the error fields in thermonuclear fusion reactors. The implications on stellarators as potential fusion reactors are also discussed.

日本語訳

対称性が破れたトカマクにおける高エネルギー核融合生成アルファ粒子の輸送理論が開発された。この理論は、トカマクにおける熱粒子に対する新古典トロイダルプラズマ粘性の理論の一般化である。摂動磁場強度の典型的な大きさと平衡磁場強度の典型的な大きさの比が10−4のオーダー以上である場合、動径方向のエネルギー輸送率が高エネルギーアルファ粒子の減速率と同程度になり得ることが示される。これは、熱核融合炉における誤差磁場の大きさに制約を課す。潜在的な核融合炉としてのステラレーターへの影響についても議論される。

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