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Magnetically confined fusion plasmas such as those generated in tokamaks and stellarators are characterized by a typical shape. Plasma shaping is the study of the plasma shape in such devices, and is particularly important for next step fusion devices such as ITER. This shape is conditioning partly the performance of the plasma. Tokamaks, in particular, are axisymmetric devices, and therefore one can completely define the shape of the plasma by its cross-section.

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  • Magnetically confined fusion plasmas such as those generated in tokamaks and stellarators are characterized by a typical shape. Plasma shaping is the study of the plasma shape in such devices, and is particularly important for next step fusion devices such as ITER. This shape is conditioning partly the performance of the plasma. Tokamaks, in particular, are axisymmetric devices, and therefore one can completely define the shape of the plasma by its cross-section. (en)
  • 核聚变实验中托卡马克和仿星器产生的磁约束聚变等离子体都会有一个特定的形状。等离子体形状控制是在这些情况下研究等离子体形状的学科,它对于下一代聚变堆(例如国际热核聚变实验反应堆)的研制非常重要。这种形状是等离子体的参数的一部分。轴对称的实验设施,尤其是托卡马克,由于其对称性可以通过其截面来分析。 (zh)
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  • Magnetically confined fusion plasmas such as those generated in tokamaks and stellarators are characterized by a typical shape. Plasma shaping is the study of the plasma shape in such devices, and is particularly important for next step fusion devices such as ITER. This shape is conditioning partly the performance of the plasma. Tokamaks, in particular, are axisymmetric devices, and therefore one can completely define the shape of the plasma by its cross-section. (en)
  • 核聚变实验中托卡马克和仿星器产生的磁约束聚变等离子体都会有一个特定的形状。等离子体形状控制是在这些情况下研究等离子体形状的学科,它对于下一代聚变堆(例如国际热核聚变实验反应堆)的研制非常重要。这种形状是等离子体的参数的一部分。轴对称的实验设施,尤其是托卡马克,由于其对称性可以通过其截面来分析。 (zh)
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  • Plasma shaping (en)
  • 等离子体形状控制 (zh)
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