(Virtual) Technical Meeting on Plasma Disruptions and their Mitigation

(Virtual) Technical Meeting on Plasma Disruptions and their Mitigation
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发表时间:
2020
期刊:
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通讯作者:
M. Choi;Jayhyun Kim;J. Kwon;Jaehyun Lee;Minwoo Kim;Minho Kim;Gunsu;Yun;Y. In;Hyeon K. Park;B. Park;R. Sweeney
M. Choi;Jayhyun Kim;J. Kwon;Jaehyun Lee;Minwoo Kim;Minho Kim;Gunsu;Yun;Y. In;Hyeon K. Park;B. Park;R. Sweeney
中科院分区:
其他
文献类型:
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作者:
M. Choi;Jayhyun Kim;J. Kwon;Jaehyun Lee;Minwoo Kim;Minho Kim;Gunsu;Yun;Y. In;Hyeon K. Park;B. Park;R. Sweeney

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由于预计ITER等离子体的储存能量比目前的实验要多40倍,因此根据目前的实验进行真实的3D MHD模拟是实现ITER的必要步骤。为了支持这一要求,正在使用NIMROD和M3D-C1代码来研究辐射有效载荷穿透要求和托卡马克等离子体对有效载荷沉积在q=2表面深处的响应。
Because the ITER plasma is projected to have about 40xmore stored energy than present experiments, realistic 3D MHD simulations, benchmarked against present experiments are an essential step to project to ITER. In support of this requirement, the NIMROD and M3D-C1 codes are being used to study the radiative payload penetration requirements and the response of the tokamak plasma for payload deposition deep inside the q=2 surface.