King J D, Strait E J, Boivin R L, Taussig D, Watkins M G, Hanson J M, Logan N C, Paz-Soldan C, Pace D C, Shiraki D, Lanctot M J, La Haye R J, Lao L L, Battaglia D J, Sontag A C, Haskey S R, Bak J G
Oak Ridge Institute for Science and Education, Oak Ridge, Tennessee 378300-8050, USA.
General Atomics, P.O. Box 85608, San Diego, California 92186-5608, USA.
Rev Sci Instrum. 2014 Aug;85(8):083503. doi: 10.1063/1.4891817.
The DIII-D tokamak magnetic diagnostic system [E. J. Strait, Rev. Sci. Instrum. 77, 023502 (2006)] has been upgraded to significantly expand the measurement of the plasma response to intrinsic and applied non-axisymmetric "3D" fields. The placement and design of 101 additional sensors allow resolution of toroidal mode numbers 1 ≤ n ≤ 3, and poloidal wavelengths smaller than MARS-F, IPEC, and VMEC magnetohydrodynamic model predictions. Small 3D perturbations, relative to the equilibrium field (10(-5) < δB/B0 < 10(-4)), require sub-millimeter fabrication and installation tolerances. This high precision is achieved using electrical discharge machined components, and alignment techniques employing rotary laser levels and a coordinate measurement machine. A 16-bit data acquisition system is used in conjunction with analog signal-processing to recover non-axisymmetric perturbations. Co-located radial and poloidal field measurements allow up to 14.2 cm spatial resolution of poloidal structures (plasma poloidal circumference is ~500 cm). The function of the new system is verified by comparing the rotating tearing mode structure, measured by 14 BP fluctuation sensors, with that measured by the upgraded B(R) saddle loop sensors after the mode locks to the vessel wall. The result is a nearly identical 2/1 helical eigenstructure in both cases.
DIII-D托卡马克磁诊断系统[E. J. 斯特雷特,《科学仪器评论》77, 023502 (2006)]已升级,以显著扩展对等离子体对固有和外加非轴对称“3D”场响应的测量。新增的101个传感器的布置和设计能够分辨环向模数1≤n≤3,以及比MARS-F、IPEC和VMEC磁流体动力学模型预测更小的极向波长。相对于平衡场而言较小的3D扰动(10^(-5) < δB/B0 < 10^(-4))要求亚毫米级的制造和安装公差。通过使用电火花加工部件以及采用旋转激光水准仪和坐标测量机的对准技术实现了这种高精度。一个16位数据采集系统与模拟信号处理相结合,用于恢复非轴对称扰动。共置的径向和极向场测量能够实现极向结构高达14.2厘米的空间分辨率(等离子体极向周长约为500厘米)。通过比较由14个BP波动传感器测量的旋转撕裂模结构与模式锁定到容器壁后由升级后的B(R)鞍形环传感器测量的结构,验证了新系统的功能。结果是在两种情况下都得到了几乎相同的2/1螺旋本征结构。