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The critical point for the onset of divertor energy flux asymmetry in tokamaks

G.M. Staebler1996年被引用 21Nuclear FusionIF 3出版社

The heat flux to the divertor target plates in tokamaks is typically unbalanced. Several theories have been proposed to explain this asymmetry based on physical effects, such as the E*B drift, which produce a definite direction for the asymmetry. New mechanisms, which do not produce a preferred direction, are also shown to generate asymmetric heat fluxes spontaneously. The critical point for the onset of the asymmetric solution is calculated analytically and compared with numerical solutions. The two principle mechanisms for spontaneous asymmetry generation are divertor radiation and the parallel current flow in the scrape-off layer. Electrically floating the divertor target plates eliminates the parallel current drive and increases the radiated power fraction required to reach the critical point for the onset of an asymmetric heat flux

日本語訳

トカマクにおけるダイバータ標的板への熱流束は、典型的には非対称である。この非対称性を説明するために、E×Bドリフトなど、明確な方向を生み出す物理的効果に基づくいくつかの理論が提案されている。また、優先方向を生み出さない新たな機構も、自発的に非対称な熱流束を生成することが示されている。非対称解の発生の臨界点は解析的に計算され、数値解と比較される。非対称性の自発的生成のための2つの主要な機構は、ダイバータ放射とスクレイプオフ層における平行電流である。ダイバータ標的板を電気的に浮遊させることで、平行電流駆動が排除され、非対称熱流束の発生の臨界点に達するために必要な放射パワー割合が増加する。

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