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氧气浓度差磁致通风数值模拟 被引量:2

NUMERICAL SIMULATION OF MAGNETICALLY INDUCED VENTILATION RESULTED FROM DIFFERENCE OF OXYGEN CONCENTRATION
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摘要 利用超导磁体提供的强梯度磁场,可以驱动具有不同氧气浓度的空气之间产生流动而形成通风。为研究氧气浓度差磁致通风的本质和作用机理,文中对该通风方式进行了理论分析,并就具体的超导磁体系统作用下的圆管内磁致通风进行了数值模拟。结果表明:需通风区与环境空气之间的氧气浓度差越大,超导磁体线圈电流密度越高,氧气浓度差磁致通风的流速就越高,通风效果越好。利用超导磁体驱动具有不同氧气浓度的空气之间产生通风是一种新型通风方式。 The air between regions with different oxygen concentrations can be driven to flow by means of the strong magnetic gradient field supplied by a superconducting magnet and the air ventilation is then formed. The theoretical analysis for the magnetically induced air ventilation by a superconducting magnet is presented. The ventilation in a ceramic pipe induced by a room temperature access superconducting magnet system is numerically simulated. The results show that the bigger the oxygen concentration difference between the region required ventilating and the surroundings, the larger the flow rate of the air ventilation. The flow rate of the ventilation also increases with increasing the electric current density of the superconducting magnet coil. The air ventilation induced by a superconducting magnet is a new form of ventilation.
出处 《中国电机工程学报》 EI CSCD 北大核心 2005年第13期96-100,共5页 Proceedings of the CSEE
基金 国家自然科学基金项目(50476013) 国家重点基础研究发展规划基金项目(G20000263)。~~
关键词 热能动力工程 超导磁体 梯度磁场 顺磁性 磁场力 通风 Thermal power engineering Super- conducting magnet Magnetic gradient field Paramagnetic Magnetic force Ventilation
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参考文献12

  • 1叶林,林良真.超导故障限流器在电力系统中的应用研究[J].中国电机工程学报,2000,20(7):1-4. 被引量:91
  • 2陈星莺,刘孟觉,单渊达.超导储能单元在并网型风力发电系统的应用[J].中国电机工程学报,2001,21(12):63-66. 被引量:124
  • 3万尚军,钱金根,倪光正,徐善纲,温旭辉,张鸣柳.电动悬浮型磁悬浮列车悬浮与导向技术剖析[J].中国电机工程学报,2000,20(9):22-25. 被引量:33
  • 4Wakayama N I. Magnetic buoyancy force acting on bubbles in nonconducting and diamagnetic fluids under microgravity[J]. J.Appl. Phys.,1997, 81 (7): 2980-2984.
  • 5Wakayama N I. Behavior of gas flow under gradient magnetic fields[J]. J. Appl. Phys., 1991, 69(4): 2734-2736.
  • 6Wakayama N I. Magnetic promotion of combustion in diffusion flames[J]. Combustion & Flame, 1993, 93(3): 207-214.
  • 7Wakayama N I. Effect of a decreasing magnetic field on the flow of nitrogen gas [J]. Chemical Physics Letters, 1991, 185 (5,6):449-451.
  • 8Pauling L, Wood R E, Sturdivant J H. An instrument for determining the partial pressure of oxygen in a gas[J]. J. Amer. Chem.Soc., 1946, 68: 795-798.
  • 9Uetake H, Nakagawa J, Hirota N et al. Nonmechanical magnetothermal wind blower by a superconducting magnet[J]. Journal of Applied Physics, 1999, 85 (8): 5735-5737.
  • 10Uetake H, Hirota N, Nakagawa J et al. Thermal convection control by gradient magnetic field[J]. Journal of Applied Physics, 2000, 87(9): 6310-6312.

二级参考文献14

  • 1万尚军.EDS型磁浮列车电磁系统的计算机辅助分析[M].杭州:浙江大学,1999..
  • 2林良真,超导电性及其应用,1999年
  • 3王梅义,大电网系统技术,1995年
  • 4韩朔,超导技术应用发展对策报告,1989年
  • 5何仰赞,电力系统分析,1984年
  • 6叶林,电力系统自动化,23卷,18期,9页
  • 7万尚军,EDS型磁浮列车电磁系统的计算机辅助分析 [D],1999年
  • 8Jian L H,Center for transportation research ,Energy systems division ,Argonne National La,1994年
  • 9Jian L H,IEEE Trans Magnetics,1993年,29卷,6期,4153页
  • 10Wasynczuk G,IEEE Trans Power Apparatus and Systems,1981年,100卷,6期,2831页

共引文献240

同被引文献43

  • 1杨帆,任建勋,杨昆仑,宋耀祖.通道内空气热磁对流的协同分析[J].工程热物理学报,2006,27(z2):89-92. 被引量:7
  • 2徐喆,夏东,丘明,姚志豪,肖玲,任洪涛,焦玉磊,郑明辉.转子内具有钇钡铜氧块材的超导磁阻电动机的研究[J].中国电机工程学报,2005,25(8):139-144. 被引量:3
  • 3杨立军,杜小泽,刘登瀛,任建勋.超导磁体系统产生的磁场作用下的微重力环境[J].中国电机工程学报,2006,26(22):157-161. 被引量:4
  • 4Gebhart B, Yaluria Y, Mahajan R L, et al. Buoyancy-induced flows and transport[M]. Washington DC: Hemisphere, 1998: 41-47.
  • 5Ostrach S. Natural convection in enclosure[J]. ASME Journal of Heat Transfer, 1998(110): 1175-1190.
  • 6Agdin O, Unal A, Aghan T. Natural convection in retangular enclosures heated from one side and cooled from the ceiling [J]. International Journal of Heat and Mass Transfer, 1999, 42(13): 2345-2355.
  • 7Qi J, Wakayama N I, Yabe A. Magnetic control of thermal convection in electrically non-conducting or low conducting paramagnetic fluids[J]. International Journal of Heat Mass Transfer, 2001, 44(16): 3043-3052.
  • 8Braithwaite D, Beaugnon E, Toumier R. Magnetically controlled convection in a paramagnetic fluid[J]. Nature, 1991(354): 134-136.
  • 9Carruthers J R, Wolfe R. Magnetothermal convection in insulation paramagneticfluids[J]. Joumal ofAppliedPhysics, 1968, 39(12): 5718-5722.
  • 10Huang J, Gray D D, Edwards B F. Magnetic control of convection in nonconducting diamagnetic fluids[J]. Physical Review E, 1998, 58(4): 5164-5167.

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