期刊文献+

船载铁磁物体对全船磁场影响的数值预测方法

A numerical prediction method for the influence of the onboard ferromagnetic objects on the magnetic field of ships
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摘要 舰船复杂的结构和多样的铁磁材料使得建立准确的舰船磁场模型十分困难,研究船载铁磁物体对全船磁场的影响规律是建立舰船磁场简化模型的必要前提。基于三维静磁积分法,提出一种船载铁磁物体对全船磁场影响的数值预测方法。首先以圆筒和钢板混合模型为计算实例,模拟计算结果与实验测量值吻合较好,由此说明数值模拟计算的有效性和正确性;其次,设计某型船模的数值计算模型,分析研究内部铁磁设备、垂直舱壁及水平舱壁对全船磁场的影响规律。结果表明,对于低磁材料的舰船,不能忽略船载铁磁物体对全船磁场的影响。所得结论对实际舰船磁场建模工程具有一定指导意义。 Due to the complicated structure and various ferromagnetic material of ships,it is extremely difficult to construct exact magnetic models of ships. Researching on the influence of the onboard ferromagnetic objects on the magnetic field of ships is the precondition for the construction of the approximate magnetic models of ships. A prediction method is proposed for the influence of the magnetic field of the onboard ferromagnetic objects on the magnetic field of ships based on 3D magnetostatic integral equation method. Firstly,a magnetic model of the ferromagnetic hollow cylinder and the steel plate is provided to verify the proposed prediction method. The consistency of the calculated field and the measured field showed its efficiency. Secondly,a mock-up numerical simulation for the influence of the magnetic field of the onboard ferromagnetic objects on the magnetic field is designed,including ferromagnetic equipment,vertical wallboards and horizontal wallboards. The simulation showed that the onboard ferromagnetic objects should not be ignored when modeling. The obtained conclusions have great significance for the practical engineering of magnetic models of ships.
出处 《舰船科学技术》 北大核心 2014年第10期41-45,共5页 Ship Science and Technology
基金 国家自然科学基金资助项目(51107145)
关键词 舰船磁场计算 磁场积分法 铁磁物体 磁隐身 magnetic field calculation of ships magnetostatic integral equation method ferromagnetic objects magnetic silencing
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参考文献9

  • 1BRUNOTTE X, MEUNIER G, BONGIRAUD J P. Ship magnetizations modeling by the finite element method [ J ]. IEEE Trans. Magn. , 1993,29(2) : 1970 - 1975.
  • 2DAMIDAU F, BANDELIER B, PENVEN P. A fast and precise determination of the static magnetic field in the presence of thin iron shells[ J]. IEEE Trans. Magn. , 1995, 31(6) :3491 -3493.
  • 3CHADEBEC O, COULOMB J, BONGIRAUD J, et al. Recent improvements for solving inverse magnetostatic problem applied to thin shells [ J]. IEEE Trans. Magn. , 2002,38 ( 2 ) : 1005 - 1008.
  • 4王金根 龚沈光 刘胜道.磁性目标的高精度建模方法.海军工程大学学报,2001,13(3):49-52.
  • 5隗燕琳,肖昌汉,陈敬超,周国华.由舰船垂向分量磁场获得其三分量磁场的研究[J].哈尔滨工程大学学报,2008,29(2):111-114. 被引量:12
  • 6高俊吉,刘大明,姚琼荟.舰船固定磁性分解方法研究[J].哈尔滨工程大学学报,2007,28(10):1164-1170. 被引量:14
  • 7LIU Sheng-dao, LIU Da-ming, XIAO Chang-ban, et al. Magnetic model of magnetic objects based on genetic algorithm [ C ]. The 6th International Conference on Electromagnetic Field Problems and Applications. USA:San Antonio, TSI Press, 2008 : 51 - 54.
  • 8樊明武,颜威利.电磁场积分方程法[M].北京:机械工业出版社,1988.
  • 9周国华,肖昌汉,刘胜道,高俊吉.基于六面体单元表面磁场积分法求解三维静磁场[J].电工技术学报,2009,24(3):1-7. 被引量:16

二级参考文献29

  • 1冯之鑫,韩朔.非线性静磁场问题分析计算的积分方程方法[J].电工技术学报,1993,8(3):6-9. 被引量:2
  • 2吴立建,王群京,杜世俊,倪有源.磁场积分法在永磁步进球形电动机场分析中的应用[J].中国电机工程学报,2004,24(9):192-197. 被引量:24
  • 3翁行泰,曹梅芬.潜艇感应磁场的三维有限元法计算研究[J].上海交通大学学报,1994,28(5):69-76. 被引量:19
  • 4郭成豹,张晓锋,肖昌汉,刘大明.地磁场中空心铁磁圆柱体纵向磁化状态数值分析[J].哈尔滨工程大学学报,2006,27(6):886-890. 被引量:11
  • 5Froidurot B, Rouve L L, Foggia A, et al. Calculation of electrical machine magnetic stray fields[C]. IEE Proc. Sci. Meas. Technol, 2002, 149 (5):190-193.
  • 6Erik Jφrgensen, Oleksiy S Higher order hierarchical Kim, Peter Meincke, et al discretization scheme for surface integral equations for layered media[J]. IEEE Transactions on Geoscience and Remote Sensing, 2004, 42 (4):764-772.
  • 7Yun Huichu, Weng Chochew. Large-scale computation for electrically small structures using surfaceintegral equation method[J]. Microwave and Optical Technology Letters, 2005, 47 (6):525-530.
  • 8Wolfgang Hafla, Andre Buchau, Friedemann Groh, et al. Efficient integral equation method for the solution of 3D magnetostatic problems[J]. IEEE Transactions on Magnetics, 2005, 41 (5): 1408-1411.
  • 9Ozgur Ergul, Levent Gurel. The use of curlconforming basis functions for the magnetic-field integral equation[J]. IEEE Transactions on Antennas and Propagation, 2006, 54 (7): 1917-1926.
  • 10Slobodan Babic, Cevdet Akyel, Minya M Gavriboric. Calculation improvement of 3D linear magnetostatic field based on fictitious magnetic surface charge[J]. IEEE Transactions on Magnetics, 2000, 36 (5): 3125-3127.

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