标题: | 界面热阻对非平板薄膜系统热传导效应之分析 Effects of Interface Thermal Resistance on the Heat Transfer for a Non-Planar Thin Film System |
作者: | 王建评 Jiang -Ping Wang 曲新生 Hsin-Sen Chu 机械工程学系 |
关键字: | 界面热阻;非平板薄膜;热传导;微观热传;interface thermal resistance;non-planar thin film;heat conduction;microscale heat transfer |
公开日期: | 2001 |
摘要: | 本文主要在探讨微观尺寸下圆柱形及球形多层薄膜内(Multi-layer thin film)界面热阻对热传导现象的影响。在极微小尺寸下,当薄膜尺寸小至与材料的平均自由路径相同级数时,热传导的行为已非巨观下连续的概念所能描述。本文中自行推导出圆柱座标及球座标下的声子辐射热传模式,探讨微小尺寸下薄膜热物理性质的改变。在界面处以非弹性散异理论模式来分析界面热阻的影响。由研究结果发现,薄膜尺寸愈小,造成边界上的温度落差愈大,声子的穿透现象(Ballistic transport)愈明显,薄膜的热传导系数也随着薄膜尺寸的缩小而愈小。此时薄膜内的声子处于高度不平衡状态,降低了能量传递的能力,与实验结果比较亦相当符合。曲率的改变对薄膜热传导系数亦有明显的影响,曲率愈大造成薄膜内声子的碰撞机率增加,使得热传导系数愈大,其中又以球形薄膜受曲率的影响最大。在界面处以非弹性散异理模式来分析界面热阻的影响。由研究结果得知,以非弹性散异理论模式所得到的界面热阻可视为一定值,曲率及尺寸的改变对热阻大小所造成的影响并不明显。 This study deals with the effects of interface thermal resistance on the heat transfer for a non- planar thin film system based on the microscopic heat transport theory. In the acoustic thin limit, where the film thickness is much less than the phonon mean free path, macroscopic heat transport theory can’t be applied. The equation of phonon radiative transfer is applied to analyze the effects of curvature and film thickness on the thermal conductivity of thin film system, including interfacial effects. The results showed a significant reduction of effective thermal conductivity when the film thickness is getting thinner. Phonon heat conduction is in high non-equilibrium state inside the film and boundary scattering effect is dominant here. The agreements between the present predictions of the thermal conductivity and the experimental data are achieved. Furthermore, curvature also has significant effect on the thermal conductivity. Larger curvature would enhance energy transport inside the thin film. Regarding for inelastic diffuse mismatch model, thermal resistances can be treated as a constant. Both size and curvature effects can’t be evident to see. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT900489036 http://hdl.handle.net/11536/69152 |
显示于类别: | Thesis |