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添加铁磁性微颗粒对沸腾传热的影响
引用本文:李春辉,王补宣,彭晓峰. 添加铁磁性微颗粒对沸腾传热的影响[J]. 热科学与技术, 2003, 2(1): 30-33
作者姓名:李春辉  王补宣  彭晓峰
作者单位:清华大学,热能工程系,北京,100084;清华大学,热能工程系,北京,100084;清华大学,热能工程系,北京,100084
基金项目:国家自然科学基金资助项目 ( 5 9995 5 5 0 -3)
摘    要:试图从理论上分析添加铁磁性颗粒流体的沸腾传热特性,具有讨论了磁场梯度与重力相同、相反以及垂直三种情况时磁场对沸腾的影响,得出了一种有益的结论:在磁场梯度与重力方向相同时,在磁场力达到一定程度的“铁磁流体”中可能不再有气泡产生;在磁场梯度和重力方向相反时,会创造一个相应于微重力的环境;而磁场梯度和重力方面相垂直时,气泡的形状和脱离的路径会有变化。

关 键 词:铁磁性颗粒  表面张力  脱离直径  磁场强度
文章编号:1671-8097(2003)01-0030-04
修稿时间:2001-06-20

Boiling heat transfer under the influence of ferromagnetic micro-particles
LI Chun-hui,WANG Bu-xuan,PENG Xiao-feng. Boiling heat transfer under the influence of ferromagnetic micro-particles[J]. Journal of Thermal Science and Technology, 2003, 2(1): 30-33
Authors:LI Chun-hui  WANG Bu-xuan  PENG Xiao-feng
Abstract:The research of boiling heat transfer with ferromagnetic particles still stays the stage of observation. Some basic considerations were tried to put forward in this paper. This paper highlighted on the influences of magnetic gradient direction as for same, opposite and perpendicular to that of gracity. Some interesting results can be concluded: when the direction of magnetic gradient is the same as gravity, as the magnetic force exceed some value, there will be no bubble in the fluid; when the direction of magnetic gradient is opposite to gravity, the microgravity atmosphere is created; when the direction of magnetic gradient is perpendicular to gravity, the shape and department route of bubble will change.
Keywords:ferromagnetic particles  interfacial intension  department diameter  magnetic intensity
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