Preliminary design of KTX magnet system

Preliminary design of KTX magnet system
复制标题

KTX磁体系统的初步设计

DOI:
10.1016/j.fusengdes.2012.09.001
复制
发表时间:
2012-11
影响因子:
1.7
通讯作者:
Du, Shuangsong
Du, Shuangsong
中科院分区:
工程技术3区
文献类型:
--
作者:
Zheng, Jinxing;Li, Hong;Zhang, Jiancheng;Zhao, Wenlong;Song, Yuntao;Yang, Qingxi;Liu, Xufeng;Xiao, Bingjia;Luo, Zhengping;Ding, Weixing;Liu, W;ong;Du, Shuangsong

文献摘要

参考文献

被引文献

相似文献

KTX是一种逆场箍缩磁约束装置,其磁体系统是由ASIPP和中国科大联合设计的。KTX的主要参数介于RFX和MST之间。它的磁体系统包括环向场(TF)绕组和极向场(PF)绕组(欧姆加热绕组和平衡场绕组),这两种绕组比托卡马克装置简单,因为托卡马克需要超导系统来执行准稳态操作并实现Q>10。然而,磁体系统设计的最重要部分在于如何将Tf磁场和各种杂散场的波纹保持在最小值。文中尽可能详细地介绍了KTX磁体系统的主要设计工作,并对已经完成的磁体线圈位置和绕组、绝缘设计、等离子体模型预测、热分析、磁场计算等主要工作进行了分析。磁体系统设计是KTX器件设计的主要活动之一,是未来研发和制造的有效保障。此外,还应根据未来研发和相关测试的结果,不断优化和改变详细设计活动。
KTX is a reversed field pinch magnetic confinement device of which the magnet system is designed in ASIPP and USTC. The main parameter of KTX is between RFX and MST. Its magnet system includes the toroidal field (TF) winding and poloidal field (PF) winding (ohmic heating winding and equilibrium field winding), which are less complex than tokamak device due to the fact that a tokamak requires a superconducting system to perform quasi-steady state operation and achieve Q>10. However, the most important part of the magnet system design lies in how to keep the TF magnetic field ripple, as well as any kinds of stray field, to a minimum value. The main design activities of the KTX magnet system are presented as detailed as possible in this paper, and the main activities which have already been completed include magnet coils position and winding, insulation design, plasma modeling prediction, thermal analysis, magnetic field calculations were analyzed and so on. The magnet system design is one of the major activities for KTX device design, which is effective guarantee for the future R&D and manufacture. Besides, the detailed design activities should be continuously optimized and changed based on the results from future R&D and relevant tests.
DOI: 10.1109/20.11463
发表时间: 1988-03
影响因子: 2.1
作者:
F. Bellina;M. Guarnieri;A. Stella
通讯作者: F. Bellina;M. Guarnieri;A. Stella
DOI: 10.1016/s0920-3796(02)00194-1
发表时间: 2002-12
影响因子: 1.7
作者:
W. Baker;S. D. Bello;D. Marcuzzi;P. Sonato;P. Zaccaria
通讯作者: W. Baker;S. D. Bello;D. Marcuzzi;P. Sonato;P. Zaccaria
DOI: 10.1016/0920-3796(94)00282-c
发表时间: 1995-01
影响因子: 1.7
作者:
A. Maschio;R. Piovan;I. Benfatto;P. Collarin;A. Lorenzi;L. Fellin;E. Gaio;J. Gray;M. Hood
通讯作者: A. Maschio;R. Piovan;I. Benfatto;P. Collarin;A. Lorenzi;L. Fellin;E. Gaio;J. Gray;M. Hood
DOI: 10.1016/0920-3796(93)90124-z
发表时间: 1993-12
影响因子: 1.7
作者:
F. Najmabadi;Robert W. Conn;R. Krakowski;K. Schultz;D. Steiner;J. Bartlit;C. Bathke;James P. Blanchard-J
通讯作者: F. Najmabadi;Robert W. Conn;R. Krakowski;K. Schultz;D. Steiner;J. Bartlit;C. Bathke;James P. Blanchard-J
DOI: 10.1007/bf01054639
发表时间: 1988-09
影响因子: 1.1
作者:
F. Najmabadi;T. F. Group
通讯作者: F. Najmabadi;T. F. Group