标题: 微细双层圆管的热传分析
Analysis on Heat Conduction in a Two-layer Dielectric Microtube
作者: 陈郁萍
Yu-Ping Chen
林振德
Jenn-Der Lin
机械工程学系
关键字: 微细双层圆管;热传
公开日期: 2000
摘要: 本论文系针对一在轴向无限延长,而外径为a、内径为b之圆柱圆管的热传导系数进行详细分析。考虑之材料为介电材质,且为等向对称之量子井,即不考虑电子对热传导的贡献,晶体中热传导主要依靠声子来完成。我们考虑材料为自由边界,即边界介于弹性材料及空气中,因此两个边界上之正向应力张量为零。针对上述材料之几何图形,我们探讨其对声子频谱之影响。
此外,我们也对灰体介电材质双层微细圆管研究其在内部及交界面的热传效应。当圆管为两层相叠,内外管皆会受到彼此对方来自内外边界及其来源项的影响,且在交界面会造成反射及折射。我们探讨交界面不同反射率薄膜厚度、曲率及内外层不同厚度差等材料参数对双层微细圆管内热传导之效应,另外,针对 之实际双层材质之例子分析内部之热传特性。结果显示,微管内能量分布决定于外壁激发的声子能量及在交界面之反射率,因此,微管外壁温度及材质的反射率影响其内部温度分布甚钜。除了微管管壁厚度外,微管的曲率也是影响热通量及等效热传导系数的重要参数。
A cylindrical dielectric tube of infinite length in the longitudinal direction with inner radius a and outer radius b is considered. Free boundaries are assumed, that is, boundary between an elastic material and vacuum is considered, where the normal components of the stress tensor are zero and the displacement is unrestricted. We investigate the geometric figure of material to understand the effect of phonon frequency spectrum.
In this thesis, we also study the effect of various geometrical and thermophysical parameters as well as the interface on the heat conduction in a two-layer microtube of gray body. Results indicate that the energy distribution in the annulus is dominated by phonons excited by outer surfaces. Consequently, the temperature is considerably affected by the temperature of outer surfaces and the reflectivity of the interface. In addition to tube wall thickness, which was usually considered as the size effect on heat conduction, the curvature effect would significantly change the heat flux across the tube wall .
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT890489034
http://hdl.handle.net/11536/67533
显示于类别:Thesis