超导磁体低温液位监测单元的设计与实现
收稿日期: 2014-05-29
修回日期: 2014-10-29
网络出版日期: 2014-12-05
基金资助
国家重大科学仪器设备开发专项资助项目(2011YQ120035).
Design and Implementation of a Low-Temperature Liquid Level Monitor Unit for Superconducting Magnets
Received date: 2014-05-29
Revised date: 2014-10-29
Online published: 2014-12-05
Supported by
国家重大科学仪器设备开发专项资助项目(2011YQ120035).
陆建昌1 , 2 , 朱天雄1 , 陈俊飞1 , 2 , 李正刚1 , 刘朝阳1* . 超导磁体低温液位监测单元的设计与实现[J]. 波谱学杂志, 2014 , 31(4) : 465 -476 . DOI: 10.11938/cjmr20140402
The design and implementation of a low-temperature liquid level monitor unit used in superconducting magnets is introduced. In the design, voltage-controlled current source circuit and voltage-frequency conversion circuit are used in liquid helium level measurement, and capacitance-frequency conversion circuit is used in liquid nitrogen level measurement. Digital circuit based on STM32 microcontroller is used to control the voltage-controlled current source, process the frequency signal, display the liquid-level data, send the liquid-level data to the upper computer and use CAN bus to complete the remote control of the unit. The feasibility of the design was demonstrated by experimental measurements.
[1] Lin Liang-zhen(林良真), Zhang Jin-long(张金龙), Li Chuan-yi(李传义), et al. Superconductivity Application(超导电性及其应用)[M]. Beijing(北京): Beijing University of Technology Press(北京工业大学出版社), 1998.
[2] Nan He-li(南和礼). Foundation of Superconducting Magnet Design(超导磁体设计基础)[M]. Beijing(北京): National Defense Industry Press(国防工业出版社), 2007.
[3] Fukushima E, Roeder S B W. Experimental Pulse NMR(实验脉冲核磁共振)[M]. Shanghai(上海): Fudan University Press(复旦大学出版社), 1995.
[4] Ren Kai-chuan(任开春), Tu Ya-qing(涂亚庆). Analyzing more than 20 methods relating to liquid level measurement(20 余种液位测量方法分析)[J]. Industrial Instrumentation & Automaton(工业仪表与自动化装置), 2003, 5: 12-16.
[5] Celik D, Hilton D K, Zhang T, et al. Helium II level measurement techniques[J]. Cryogenics, 2001, 41: 355-366.
[6] Lubell M S. State-of-the-art of superconducting magnets[J]. Cryogenics, 1972, 12: 340.
[7] Meng Hua(孟华), Liu Na(刘娜), Li Yu-ming(历玉鸣), et al. 化工仪表及自动化[M]. Beijing(北京): Chemical Industry Press(化学工业出版社), 2006.
[8] Yu Hai-lei(于海磊), Chen Feng(陈锋), Zheng Qin-sheng(郑勤生), et al. Design of monitoring system for cryogenic propellant level(低温推进剂液位监测系统设计)[J]. Journal of Rocket Propulsion(火箭推进), 2010, 36(3): 54-57.
[9] Medeova M, Pavlík V, Skyba P. Simple continuous level meter for cryogenic liquids[J]. Cryogenics, 1998, 38: 289-291.
[10] Li Zheng-gang(李正刚), Zhang Zhi(张志), Mao Wen-ping(毛文平), et al. Application of CAN Bus in NMR Spectrometer (CAN 总线在核磁共振波谱仪中的应用)[J]. Chinese J Magn Reson(波谱学杂志), 2011, 28(1): 59-66.
[11] Zhang Zhi(张志), Liu Hai-dan(刘海丹), Li You(李由), et al. An ARM-based variable-temperature and sample handling pneumatics system for NMR spectrometers(基于ARM 的核磁共振波谱仪气动温控系统设计)[J]. Chinese J Magn Reson (波谱学杂志), 2011, 28(1): 50-58.
/
| 〈 |
|
〉 |