Scale Effects on Magnet Systems of Heliotron-Type Reactors
暂无分享,去创建一个
For power plants heliotron-type reactors have attractive advantages, such as no current-disruptions, no current-drive, and wide space between helical coils for the maintenance of in-vessel components. However, one disadvantage is that a major radius has to be large enough to obtain large Q-value or to produce sufficient space for blankets. Although the larger radius is considered to increase the construction cost, the influence has not been understood clearly, yet. Scale effects on superconducting magnet systems have been estimated under the conditions of a constant energy confinement time and similar geometrical parameters. Since the necessary magnetic field with a larger radius becomes lower, the increase rate of the weight of the coil support to the major radius is less than the square root. The necessary major radius will be determined mainly by the blanket space. The appropriate major radius will be around 13 m for a reactor similar to the Large Helical Device (LHD).
[1] Kozo Yamazaki,et al. Design Study for the Large Helical Device , 1990 .
[2] R. A. Dory,et al. SPECIAL TOPIC: Energy confinement scaling from the international stellarator database , 1995 .
[3] Akihiko Shimizu,et al. Design and development of the Flibe blanket for helical-type fusion reactor FFHR , 2000 .