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Characteristics of lower-hybrid-wave-driven steady-state tokamak power reactors

S.Y. Yuen, D. Kaplan, D.R. Cohn1980年被引用 31Nuclear FusionIF 3出版社

The use of lower hybrid waves for current drive in steady-state tokamak power reactors is studied. Constraints imposed by RF wave propagation are considered. The effect of decoupling of electron and ion temperatures is studied and is found to enhance the ratio of fusion power to dissipated power. Tradeoffs for parameters of RF-driven steady-state reactors are determined. It is found that RF-driven steady-state current operation is especially suitable for high-field high-density reactor designs. For example, this study indicates that a tokamak power reactor characterized by a major radius of 6 m, a magnetic field on axis of 7.5 T, and a fusion power output of 2500 MW could be driven in steady-state operation with RF power level equal to 2.5% of the fusion power output.

日本語訳

定常状態トカマク発電炉における電流駆動のための低ハイブリッド波の使用について研究する。RF波伝播によって課される制約を考慮する。電子温度とイオン温度の非結合の効果を研究し、それが核融合出力と散逸出力の比を向上させることが見出される。RF駆動定常状態炉のパラメータに関するトレードオフが決定される。RF駆動定常状態電流運転は、高磁場・高密度炉設計に特に適していることが見出される。例えば、この研究は、主半径6m、軸上磁場7.5T、核融合出力2500MWを特徴とするトカマク発電炉が、核融合出力の2.5%に等しいRF電力レベルで定常状態運転され得ることを示している。

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