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Effect of plasma response on the fast ion losses due to ELM control coils in ITER

Jari Varje, Otto Asunta, Mario Cavinato, Mario Gagliardi, Eero Hirvijoki, Tuomas Koskela, Taina Kurki-Suonio, Yueqiang Liu, Vassili Parail, Gabriella Saibene2016年被引用 32Nuclear FusionIF 3出版社

Mitigating edge localized modes (ELMs) with resonant magnetic perturbations (RMPs) can increase energetic particle losses and resulting wall loads, which have previously been studied in the vacuum approximation. This paper presents recent results of fusion alpha and NBI ion losses in the ITER baseline scenario modelled with the Monte Carlo orbit following code ASCOT in a realistic magnetic field including the effect of the plasma response. The response was found to reduce alpha particle losses but increase NBI losses, with up to 4.2% of the injected power being lost. Additionally, some of the load in the divertor was found to be shifted away from the target plates toward the divertor dome.

日本語訳

共鳴磁場摂動(RMP)による周辺局在モード(ELM)の緩和は、高エネルギー粒子損失とそれに伴う壁負荷を増加させ得るが、これらはこれまで真空近似で研究されてきた。本論文では、プラズマ応答の効果を含む現実的な磁場中で、モンテカルロ軌道追跡コードASCOTを用いてモデル化したITERベースラインシナリオにおける核融合アルファ粒子およびNBIイオン損失の最近の結果を提示する。その応答により、アルファ粒子損失は減少するがNBI損失は増加し、注入パワーの最大4.2%が失われることが見出された。さらに、ダイバータにおける負荷の一部が、ターゲットプレートからダイバータドームに向かって移動することが見出された。

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iter高精度(タイトル一致)

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ITERFusion Advanced Studies TorusEdge localized modeEnergetic ionIon lossELM control
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