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[1]徐翠琴,颜 宸.高频电磁抗水垢系统的研制及应用[J].武汉工程大学学报,2015,37(02):64-67.[doi:10. 3969/j. issn. 1674-2869. 2015. 02. 014]
 .Design of high-frequency electromagnetic antifouling system and its application[J].Journal of Wuhan Institute of Technology,2015,37(02):64-67.[doi:10. 3969/j. issn. 1674-2869. 2015. 02. 014]
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高频电磁抗水垢系统的研制及应用(/HTML)
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《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
37
期数:
2015年02期
页码:
64-67
栏目:
机电与信息工程
出版日期:
2015-02-28

文章信息/Info

Title:
Design of high-frequency electromagnetic antifouling system and its application
文章编号:
1674 - 2869(2015)02 - 0064 - 04
作者:
徐翠琴颜 宸
湖北工程学院计算机与信息科学学院,湖北 孝感 432000
Author(s):
XU Cui-qin YAN Chen
School of Computer and Information Science, Hubei Engineering University, Xiaogan 432000, China
关键词:
高频电磁抗水垢系统
Keywords:
high-frequency electromagnetic antifouling system
分类号:
TP229
DOI:
10. 3969/j. issn. 1674-2869. 2015. 02. 014
文献标志码:
摘要:
基于水垢的形成机理以及高频交变电磁场对加热过程中水中结垢晶体的影响,设计了一种电磁抗垢装置.首先,采用仿真软件模拟高频电磁场方波信号发生电路,对主要参数进行调整;然后,根据电磁场分布理论分析,计算了螺旋管式绕制线圈的电磁场能量,并在此基础上不断调整系统共振频率设计出共振螺旋线圈实物,并根据电路实测信号进行微调;最后,对整个装置施加激励源,观察加热水体在施加高频交变磁场前后的结垢程度,验证了理论分析的正确性.并设计两种不同的螺旋管式绕制线圈,验证了对电磁场能量分布计算的正确性.同时在测试过程中,在已有研究资料的基础上,结合水输送装置机理,对高频电磁场方波信号的参数进行固化,得到合适的方波幅值和频率,实现该装置的最优抗水垢状态.
Abstract:
An electromagnetic antifouling device was designed based on the principles of scaling and the influence of the high frequency alternating electromagnetic field on the scale crystal as heating the water. Firstly, the software was used for simulating generating circuit of high frequency electromagnetic field and adjusting the main parameters. Secondly, the distribution of electromagnetic field was analyzed in theory, and electromagnetic field energy of the spiral coil was calculated. Then, the resonance spiral coil was designed when resonance frequency was regulated frequently and adjusted weekly according to the measured signals. Finally, we imposed the excitation to the unit, observed the scaling level of heating water pre and post applying high frequency alternating magnetic field, and validated the correctness of theoretical analysis. We designed two different spiral coils and validated the correctness of the energy distribution of electromagnetic field. At the same time, the square wave signal parameters of high frequency electromagnetic field were solidified based on the existing research materials and the mechanism of water device in the testing process. The right amplitude and frequency was got, and the optimum antifouling state was achieved.

参考文献/References:

[1] 贾亮,李真,贾绍义.磁化技术在工业水处理中的应用[J].化学工业与工程,2006,23(1):59-63.JIA Liang,LI Zhen,JIA Shao-yi. Applications of magnetization technology in the treatment of industrial wastewater[J]. Chemical Industry and Engineering, 2006,23(1):59-63. (in Chinese)[2] 王佩琼.高频电磁场防垢技术在循环水中的应用机理初探[J].电力建设,2001,22(9):43-45.WANG Pei?鄄qiong. Primary inquire into application mechanism of high?鄄frequency electromagnetic field anti-scaling technique in circulating water system[J]. Electric Power Construction, 2001,22(9):43-45. (in Chinese)[3] 范玉东,李永庆,马世平.高频电磁式水处理装置在循环水处理中的应用[J].东北电力技术,2004,7:51-52.FAN Yu?鄄dong, LI Yong?鄄qing, MA Shi?鄄ping.The application of high?鄄freguency electromagnetic water treatment device to circulating water treatment[J]. Northeastern Electric Power Technology, 2004,7:51-52. (in Chinese)[4] 傅俊萍,李录平,刘泽利,等.超声波除垢与强化传热实验研究[J].热能动力工程,2006,21(4):355-357.FU Jun-ping,LI Lu-ping, LIU Ze-li,et al. An experimental study of incrustation removal and intensified heat transfer by ultrasonic techniques[J].Journal of Engineering for Thermal Energy and Power, 2006,21(4):355-357. (in Chinese)[5] 邢晓凯,马重芳,陈永昌,等.电磁抗垢强化传热技术的热态实验研究[J].石油大学学报:自然科学版,2005,29(1):79-83.XING Xiao-kai, MA Chong-fang, CHEN Yong-chang, et al. Experimental study of electromagnetic anti-fouling technology to enhanced heat transfer[J]. Journal of the University of Petroleum,China:Edition of Natural Science,2005,29(1):79-83.(in Chinese)

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备注/Memo

备注/Memo:
收稿日期:2014-10-02基金项目:孝感学院科研项目基金(z2011010);教育厅B类项目(B2013022)作者简介:徐翠琴(1981-),女,湖北安陆人,硕士,讲师.研究方向:检测技术及智能控制.
更新日期/Last Update: 2015-03-21